163 results on '"structural loads"'
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2. Air and Structural Loads Analysis of a 5-Ton Class Rotorcraft in a Pull-Up Maneuver Using CFD/CSD Coupled Approach.
- Author
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Hong, Seong Hyun, Kim, Young Jin, Park, Soo Hyung, Jung, Sung Nam, and Kim, Ki Ro
- Subjects
ROTORCRAFT ,COMPUTATIONAL fluid dynamics ,STRUCTURAL dynamics ,SURFACE pressure - Abstract
The air and structural loads of a 5-ton class light helicopter (LH) rotor in a 2.24 g pull-up maneuver are investigated using a coupling between the computational structural dynamics (CSD) and computational fluid dynamics (CFD) methods. The LH rotor is characterized by a five-bladed system with elastomeric bearings and inter-bladed dampers. The periodic trim solution along with the converged CFD/CSD delta airloads obtained in steady-level flight (advance ratio of 0.287) are used to perform the transient CSD maneuver analysis. The resulting vehicle attitude angles and velocity profiles of the aircraft are then prescribed in the quasi-static (QS) CFD maneuver analysis. It is demonstrated that the present QS approach provides an effective means for the maneuver loads' analysis. The important flow behaviors such as BVI (blade–vortex interaction)-induced oscillations and the negative pitching moment peaks met in maneuver flight are captured nicely with the proposed method. Either the vortex trajectories or the surface pressure distributions are examined to identify the sources of the oscillations. A loose CFD/CSD coupling (LC) is used to predict the blade elastic motions, structural moments, and pitch link loads at the specified maneuver revolution of the rotor and also to correlate these with the transient CSD-based predictions. A reasonable correlation is obtained. The LC results show more pronounced 5P (five per revolution) oscillations on the structural response than those of the CSD-based methods. [ABSTRACT FROM AUTHOR]
- Published
- 2024
- Full Text
- View/download PDF
3. Dynamic Response Analysis of Floating Nuclear Power Plant Containment Under Marine Environment
- Author
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Cui, Jialin, Li, Lijuan, Zhang, Meng, Liu, Hongbing, Qu, Xianqiang, and Liu, Chengmin, editor
- Published
- 2023
- Full Text
- View/download PDF
4. Determination of Ultralight Helicopter Test Loads.
- Author
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Szilágyi, Dénes
- Subjects
HELICOPTERS ,AERODYNAMIC load ,MECHANICAL loads ,AIRFRAMES ,AEROSPACE propulsion systems - Abstract
Copyright of Aeronautical Science Bulletins / Repüléstudományi Közlemények is the property of National University of Public Service and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
- Published
- 2023
- Full Text
- View/download PDF
5. Situational Adaptation of the Open Wagon Body to Container Transportation.
- Author
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Gerlici, Juraj, Lovska, Alyona, Vatulia, Glib, Pavliuchenkov, Mykhailo, Kravchenko, Oleksandr, and Solčanský, Sebástian
- Subjects
CONTAINERIZATION ,WAGONS ,CONTAINER ships ,TRANSPORTATION industry ,SHIPPING containers ,MODULAR design - Abstract
Increased volumes of freight turnover in international transportation require the situational adaptation of the existing wagon fleet to the transportation of containers, which are commonly used at present. The research presented in this article substantiates the possibility of transporting containers in open wagons. It has been found that taking into account the possible displacements of containers in the body, the stresses at the operating modes can be twice as high as the permissible ones if an open wagon is part of the combined train. In this regard, it is proposed that a detachable multifunctional module for securing containers in the open wagon body be used. The detachable module is fixed through the fitting stops, either stationary or hinged, in the body. The rationale for the choice of the detachable module profile, as well as the results of its strength calculation, is given. The strength of the open wagon body during container transportation has been studied taking into account the proposed fastening diagram. The results of the calculations have shown that the maximum stresses in the body do not exceed permissible values. The results of the study will contribute to improvement in the efficiency of container transportation and the transport industry as a whole. Also, these results may be useful developments for designing modular vehicles. [ABSTRACT FROM AUTHOR]
- Published
- 2023
- Full Text
- View/download PDF
6. Air and Structural Loads Analysis of a 5-Ton Class Rotorcraft in a Pull-Up Maneuver Using CFD/CSD Coupled Approach
- Author
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Seong Hyun Hong, Young Jin Kim, Soo Hyung Park, Sung Nam Jung, and Ki Ro Kim
- Subjects
airloads ,structural loads ,maneuver flight ,quasi-static analysis ,blade vortex interaction ,dynamic stall ,Motor vehicles. Aeronautics. Astronautics ,TL1-4050 - Abstract
The air and structural loads of a 5-ton class light helicopter (LH) rotor in a 2.24 g pull-up maneuver are investigated using a coupling between the computational structural dynamics (CSD) and computational fluid dynamics (CFD) methods. The LH rotor is characterized by a five-bladed system with elastomeric bearings and inter-bladed dampers. The periodic trim solution along with the converged CFD/CSD delta airloads obtained in steady-level flight (advance ratio of 0.287) are used to perform the transient CSD maneuver analysis. The resulting vehicle attitude angles and velocity profiles of the aircraft are then prescribed in the quasi-static (QS) CFD maneuver analysis. It is demonstrated that the present QS approach provides an effective means for the maneuver loads’ analysis. The important flow behaviors such as BVI (blade–vortex interaction)-induced oscillations and the negative pitching moment peaks met in maneuver flight are captured nicely with the proposed method. Either the vortex trajectories or the surface pressure distributions are examined to identify the sources of the oscillations. A loose CFD/CSD coupling (LC) is used to predict the blade elastic motions, structural moments, and pitch link loads at the specified maneuver revolution of the rotor and also to correlate these with the transient CSD-based predictions. A reasonable correlation is obtained. The LC results show more pronounced 5P (five per revolution) oscillations on the structural response than those of the CSD-based methods.
- Published
- 2024
- Full Text
- View/download PDF
7. Performance of a Belled Pile Influenced by Pile Head Freedom Response to a Cooling–Heating Cycle.
- Author
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Zhou, Yang, Kong, Gangqiang, and Li, Junjie
- Subjects
- *
MECHANICAL loads , *BORED piles , *DEGREES of freedom , *STRAIN rate , *LIBERTY , *THERMODYNAMIC cycles , *HEAT recovery - Abstract
This paper demonstrates the influence of pile head freedom on the thermomechanical performance of a belled pile. Field tests on the belled pile response to a cooling–heating cycle and incremental structural construction are carried out. The temperature changes, axial strain profiles, and pressures at the pile toe are recorded through the buried instruments. The variation in the degrees of freedom, tensile forces, and inferred pile head settlements along the pile depth for different test procedures are analyzed using the measured data. The degree of freedom close to the pile head calculated from strain rates decreases with the structure mass with a gradient of −2.8×10−5/kN. The reducing effect of the incremental superstructure on pile freedom decreases along with the orientation of the pile depth. Compared with the inferred thermal displacement of the pile without an applied structural load, the values decrease by about 10% when the pile was subjected to incremental floors, and an elastic recoverable characteristic response to cooling–heating-recovery phases is observed. Compared with the equal-diameter pile, the belled pile showed a significant constraint close to the toe. Mechanical loads can decrease the cracking risk because of a possible tensile force under cooling conditions. [ABSTRACT FROM AUTHOR]
- Published
- 2023
- Full Text
- View/download PDF
8. 浅埋爆炸近场荷载特征研究.
- Author
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梁 茜, 王仲琦, 刘廷军, and 缑宇超
- Abstract
Copyright of Journal of Ordnance Equipment Engineering is the property of Chongqing University of Technology and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
- Published
- 2022
- Full Text
- View/download PDF
9. Situational Adaptation of the Open Wagon Body to Container Transportation
- Author
-
Juraj Gerlici, Alyona Lovska, Glib Vatulia, Mykhailo Pavliuchenkov, Oleksandr Kravchenko, and Sebástian Solčanský
- Subjects
transport mechanics ,situational adaptation of the wagon ,detachable module ,structural loads ,container transportation ,Technology ,Engineering (General). Civil engineering (General) ,TA1-2040 ,Biology (General) ,QH301-705.5 ,Physics ,QC1-999 ,Chemistry ,QD1-999 - Abstract
Increased volumes of freight turnover in international transportation require the situational adaptation of the existing wagon fleet to the transportation of containers, which are commonly used at present. The research presented in this article substantiates the possibility of transporting containers in open wagons. It has been found that taking into account the possible displacements of containers in the body, the stresses at the operating modes can be twice as high as the permissible ones if an open wagon is part of the combined train. In this regard, it is proposed that a detachable multifunctional module for securing containers in the open wagon body be used. The detachable module is fixed through the fitting stops, either stationary or hinged, in the body. The rationale for the choice of the detachable module profile, as well as the results of its strength calculation, is given. The strength of the open wagon body during container transportation has been studied taking into account the proposed fastening diagram. The results of the calculations have shown that the maximum stresses in the body do not exceed permissible values. The results of the study will contribute to improvement in the efficiency of container transportation and the transport industry as a whole. Also, these results may be useful developments for designing modular vehicles.
- Published
- 2023
- Full Text
- View/download PDF
10. Theoretical modeling of a bottom-raised oscillating surge wave energy converter structural loadings and power performances.
- Author
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Nguyen, Nhu, Davis, Jacob, Tom, Nathan, and Thiagarajan, Krish
- Subjects
- *
WAVE energy , *POTENTIAL flow , *TORQUE , *PHASE space , *ANALYTICAL solutions , *MAXIMUM power point trackers - Abstract
• Closed-form equations are developed for an OSWEC's pitch-pitch and surge-pitch added mass, radiation damping, and excitation forces/torques, which can be used to determine the system's response amplitude operator (RAO) and foundation loads. • The proposed model is benchmarked against numerical simulations using WAMIT and WEC-Sim; excellent agreement is found. • The flat plate assumption, inherent to the theoretical model, was examined through comparison with numerical solutions over a range of plate thickness. • A case study demonstrates the ability of the analytical model to quickly (less than one second per frequency) sweep over a domain of OSWEC dimensions, illustrating the model's utility in the early phases of design. This study presents theoretical formulations to evaluate the fundamental parameters and performance characteristics of a bottom-raised oscillating surge wave energy converter (OSWEC) device. Employing a flat plate assumption and potential flow formulation in elliptical coordinates, closed-form equations for the added mass, radiation damping, and excitation forces/torques in the relevant pitch-pitch and surge-pitch directions of motion are developed and used to calculate the system's response amplitude operator and the forces and moments acting on the foundation. The model is benchmarked against numerical simulations using WAMIT and WEC-Sim, showcasing excellent agreement. The sensitivity of plate thickness on the analytical hydrodynamic solutions is investigated over several thickness-to-width ratios ranging from 1:80 to 1:10. The results show that as the thickness of the benchmark OSWEC increases, the deviation of the analytical hydrodynamic coefficients from the numerical solutions grows from 3 % to 25 %. Differences in the excitation forces and torques, however, are contained within 12 %. While the flat plate assumption is a limitation of the proposed analytical model, the error is within a reasonable margin for use in the design space exploration phase before a higher-fidelity (and thus more computationally expensive) model is employed. A parametric study demonstrates the ability of the analytical model to quickly sweep over a domain of OSWEC dimensions, illustrating the analytical model's utility in the early phases of design. [ABSTRACT FROM AUTHOR]
- Published
- 2024
- Full Text
- View/download PDF
11. Investigation of power quality and structural loads for two‐bladed wind turbines with rigid and teetered rotors using a wind turbine emulator.
- Author
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Mohammadi, Ebrahim, Fadaeinedjad, Roohollah, and Moschopoulos, Gerry
- Abstract
Two‐bladed wind turbines (WTs) are recently discussed as a potential alternative to reduce the cost of energy in offshore wind farms which have a higher cost compared to onshore wind farms. However, the dynamic response and performance of these WTs are different from the three‐bladed WTs. In this study, new and comprehensive models for rigid and teetered rotor WTs are developed in FAST and emulated with a setup of the previous simulation‐based works. Then, the power quality issues are discussed and compared for two‐bladed WTs with rigid and teetered rotors as the main contribution of this study. The performance of a WT with different rotors is evaluated and compared in terms of power fluctuations, voltage fluctuations, flicker emission level. In addition, the structural loads of the turbine are studied and compared with both rotor types. This was done in emulation and simulation by varying linear horizontal and logarithmic vertical wind shear as well as utilising a turbulent wind time series without shear. The study presents results obtained by simulation and by emulation, using a scaled‐down WT emulator. It presents conclusions as to which type of rotor offers better performance for various operating conditions. [ABSTRACT FROM AUTHOR]
- Published
- 2020
- Full Text
- View/download PDF
12. Development of Instrumented Running Prosthetic Feet for the Collection of Track Loads on Elite Athletes
- Author
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Nicola Petrone, Gianfabio Costa, Gianmario Foscan, Antonio Gri, Leonardo Mazzanti, Gianluca Migliore, and Andrea Giovanni Cutti
- Subjects
running specific prostheses (RSP) ,running prosthetic feet (RPF) ,strain gauges ,calibration ,validation ,structural loads ,Chemical technology ,TP1-1185 - Abstract
Knowledge of loads acting on running specific prostheses (RSP), and in particular on running prosthetic feet (RPF), is crucial for evaluating athletes’ technique, designing safe feet, and biomechanical modelling. The aim of this work was to develop a J-shaped and a C-shaped wearable instrumented running prosthetic foot (iRPF) starting from commercial RPF, suitable for load data collection on the track. The sensing elements are strain gauge bridges mounted on the foot in a configuration that allows decoupling loads parallel and normal to the socket-foot clamp during the stance phase. The system records data on lightweight athlete-worn loggers and transmits them via Wi-Fi to a base station for real-time monitoring. iRPF calibration procedure and static and dynamic validation of predicted ground-reaction forces against those measured by a force platform embedded in the track are reported. The potential application of this wearable system in estimating determinants of sprint performance is presented.
- Published
- 2020
- Full Text
- View/download PDF
13. The Impact of Pitch-To-Stall and Pitch-To-Feather Control on the Structural Loads and the Pitch Mechanism of a Wind Turbine
- Author
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Arash E. Samani, Jeroen D. M. De Kooning, Nezmin Kayedpour, Narender Singh, and Lieven Vandevelde
- Subjects
pitch-to-stall ,pitch-to-feather ,pitch mechanism ,structural loads ,Technology - Abstract
This article investigates the impact of the pitch-to-stall and pitch-to-feather control concepts on horizontal axis wind turbines (HAWTs) with different blade designs. Pitch-to-feather control is widely used to limit the power output of wind turbines in high wind speed conditions. However, stall control has not been taken forward in the industry because of the low predictability of stalled rotor aerodynamics. Despite this drawback, this article investigates the possible advantages of this control concept when compared to pitch-to-feather control with an emphasis on the control performance and its impact on the pitch mechanism and structural loads. In this study, three HAWTs with different blade designs, i.e., untwisted, stall-regulated, and pitch-regulated blades, are investigated. The control system is validated in both uniform and turbulent wind speed. The results show that pitch-to-stall control enhances the constant power control for wind turbines with untwisted and stall-regulated blade designs. Stall control alleviates the fore-aft tower loading and the blades flapwise moment of the wind turbine with stall-regulated blades in uniform winds. However, in turbulent winds, the flapwise moment increases to a certain extent as compared to pitch-to-feather control. Moreover, pitch-to-stall control considerably reduces the summed blade pitch movement, despite that it increases the risk of surface damage in the rolling bearings due to oscillating movements with a small amplitude.
- Published
- 2020
- Full Text
- View/download PDF
14. Collection of Structural Loads Acting on Instrumented Running Specific Prostheses during Field Tests on Elite Atletes
- Author
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Nicola Petrone, Gianfabio Costa, Gianmario Foscan, Antonio Gri, Rosanne Boekestijn, Gianluca Migliore, and Andrea Giovanni Cutti
- Subjects
Running Specific Prostheses ,strain gauges ,structural loads ,General Works - Abstract
The knowledge of loads acting on Running Specific Prostheses (RSP), and in particular, on Running Prosthetic Feet (RPF) is crucial for evaluating the athlete’s running technique, designing RPF, and developing models of the runners. The aim of this work was to develop a set of instrumented RPF (iRPF) suitable for track data collection of start, sprinting, and whole run-in and take-off of long jump. The system allows measuring with a portable data logger forces acting on the foot clamp on multiple steps of the athlete without modifying the RSP behavior: The method involves strain gauge bridges applied to each RPF in a configuration that allows decoupling the loads parallel and normal to the foot clamp during the stance phase. Comparison with literature data and validation against force platform data gave confirmation of the validity of the method in the estimation of determinants of sprint performance.
- Published
- 2020
- Full Text
- View/download PDF
15. WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES.
- Author
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Mun Sung Kim, Kwang Hyo Jung, and Sung Boo Park
- Subjects
- *
FLOATING (Fluid mechanics) , *HYDRODYNAMICS , *POTENTIAL theory (Mathematics) - Abstract
As oil or gas field moves deeper offshore area, offshore offloading operations such as Tandem or Side-by-Side arrangement between two floating structures take place in many locations throughout the world and also have many hydrodynamic problems. Therefore, the researches on the motion response and hydrodynamic force including first and second order between two floating structures are needed to have the more safe offloading operability in waves. In this paper, prediction of wave induced motion responses and structural loads at midship section with hydrodynamic interaction effect between two offshore floating structures in various heading waves are studied by using a linearized three-dimensional potential theory. Numerical calculations using three-dimensional pulsating source distribution techniques have been carried out for hydrodynamic pressure distribution, wave exciting force, twelve coupled linear motion responses, relative motions and wave loads of the barge and the ship in oblique waves. The computational results give a good correlation with the experimental results and also with other numerical results. As a result, the present computational tool can be used effectively to predict the wave induced motions and structural loads of multiple offshore floating structures in waves. [ABSTRACT FROM AUTHOR]
- Published
- 2018
- Full Text
- View/download PDF
16. An adaptive operational strategy for enhanced provision of frequency containment reserve by Wind Turbines: Data-driven based power reserve adjustment.
- Author
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Kayedpour, Nezmin, De Kooning, Jeroen D.M., Samani, Arash E., Vandevelde, Lieven, and Crevecoeur, Guillaume
- Subjects
- *
MECHANICAL loads , *REAL-time control , *TORQUE control , *SPEED limits , *ADAPTIVE control systems , *ELECTRIC power distribution grids , *ADAPTIVE fuzzy control , *INDUCTION generators - Abstract
Due to the growing penetration of renewables, Wind Turbines (WT) are becoming increasingly crucial for grid balancing services, such as Frequency Containment Reserve (FCR). This study proposes an adaptive operational strategy that optimally accommodates the power reserve and controls the active power based on grid frequency uncertainties and stochastic wind variations. The proposed approach includes an end-to-end solution, considering fixed and percentage reserve methods, from estimating an appropriate reserve margin to the real-time computation of generator torque and pitch control setpoints in response to grid frequency variations. A real-time look-up table is incorporated to actively adjust the reserve and adapt the deloading rotor speed-power curve based on a short-term estimation of the grid frequency using a deep-learning technique. Applying the proposed strategy improves WTs' FCR contribution by at least 3.3 times reserve in MW. Moreover, adaptive fuzzy-PI pitch-torque controllers are suggested to enhance the WT dynamic response and ensure smooth provision of FCR. Simulation results of a 5 MW-NREL offshore model show the improvement of the fuzzy-PI in power reference tracking, rotor speed regulation, and average studied mechanical load parameters in the range of 2.14–11.69%, 11.1%, and 8.81%, respectively, for an average of 250 kW reserve, confirming an overall improvement. • Adaptive strategy for Wind Turbines optimizes power reserve and controls active power, considering the grid frequency uncertainties. • End-to-end solution estimates reserve margin and computes generator torque and pitch control setpoints in real time for different wind conditions. • Real-time look-up table adjusts reserve and adapts rotor speed-power curve using a deep-learning approach predicting grid frequency changes. • Proposed strategy improves contributions of wind turbines in the reserve market by at least 3.3 times reserve in MW. • Fuzzy-PI controllers enhance WT dynamic response and ensure smooth frequency containment reserve (FCR) provision in all operating regions. [ABSTRACT FROM AUTHOR]
- Published
- 2023
- Full Text
- View/download PDF
17. Multibody analyses for performance and aeromechanics of a rotor in low-speed flight
- Author
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Park, Jae-Sang
- Published
- 2013
- Full Text
- View/download PDF
18. Effects of Power Reserve Control on Wind Turbine Structural Loading
- Author
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Damiani, Rick
- Published
- 2016
- Full Text
- View/download PDF
19. A Novel Wind Turbine Concept Based on an Electromagnetic Coupler and the Study of Its Fault Ride-through Capability
- Author
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Rui You, Braulio Barahona, Jianyun Chai, and Nicolaos A. Cutululis
- Subjects
variable speed wind turbine ,electromagnetic coupler ,synchronous generator ,voltage support capability ,HAWC2 ,structural loads ,Technology - Abstract
This paper presents a novel type of variable speed wind turbine with a new drive train different from the variable speed wind turbine commonly used nowadays. In this concept, a synchronous generator is directly coupled with the grid, therefore, the wind turbine transient overload capability and grid voltage support capability can be significantly improved. An electromagnetic coupling speed regulating device (EMCD) is used to connect the gearbox high speed shaft and synchronous generator rotor shaft, transmitting torque to the synchronous generator, while decoupling the gearbox side and the synchronous generator, so the synchronous generator torque oscillations during a grid fault are not transmitted to the gearbox. The EMCD is composed of an electromagnetic coupler and a one quadrant operation converter with reduced capability and low cost. A control strategy for the new wind turbine is proposed and a 2 MW wind turbine model is built to study the wind turbine fault ride-through capability. An integrated simulation environment based on the aeroelastic code HAWC2 and software Matlab/Simulink is used to study its fault ride-through capability and the impact on the structural loads during grid three phase and two phase short circuit faults.
- Published
- 2013
- Full Text
- View/download PDF
20. CFD as a seakeeping tool for ship design
- Author
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Sungeun Peter Kim
- Subjects
Nonlinear Seakeeping ,CFD ,Slamming ,Green Water ,Structural Loads ,Container Carrier ,Segmented Model Tests ,Ocean engineering ,TC1501-1800 ,Naval architecture. Shipbuilding. Marine engineering ,VM1-989 - Abstract
Seakeeping analysis has progressed from the linear frequency-domain 2D strip method to the nonlinear time-domain 3D panel method. Nevertheless, the violent free surface flows such as slamming and green water on deck are beyond the scope of traditional panel methods based on potential theory. Recently, Computational Fluid Dynamics (CFD) has become an attractive numerical tool that can effectively deal with the violent free surface flows. ABS, as a classification society, is putting forth a significant amount of effort to implement the CFD technology to the advanced strength assessment of modern commercial ships and high-speed naval craft. The main objective of this study is to validate the CFD technology as a seakeeping tool for ship design considering fully nonlinear three-dimensional slamming and green water on deck. The structural loads on a large container carrier were successfully calculated from the CFD analysis and validated with segmented model test measurements.
- Published
- 2011
- Full Text
- View/download PDF
21. Fluid Structure Interaction Modelling of Tidal Turbine Performance and Structural Loads in a Velocity Shear Environment
- Author
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Mujahid Badshah, Saeed Badshah, and Kushsairy Kadir
- Subjects
tidal energy ,marine energy ,tidal turbine ,Fluid Structure Interaction (FSI) ,CFD ,performance evaluation ,velocity shear ,structural loads ,Technology - Abstract
Tidal Current Turbine (TCT) blades are highly flexible and undergo considerable deflection due to fluid interactions. Unlike Computational Fluid Dynamic (CFD) models Fluid Structure Interaction (FSI) models are able to model this hydroelastic behavior. In this work a coupled modular FSI approach was adopted to develop an FSI model for the performance evaluation and structural load characterization of a TCT under uniform and profiled flow. Results indicate that for a uniform flow case the FSI model predicted the turbine power coefficient CP with an error of 4.8% when compared with experimental data. For the rigid blade Reynolds Averaged Navier Stokes (RANS) CFD model this error was 9.8%. The turbine blades were subjected to uniform stress and deformation during the rotation of the turbine in a uniform flow. However, for a profiled flow the stress and deformation at the turbine blades varied with the angular position of turbine blade, resulting in a 22.1% variation in stress during a rotation cycle. This variation in stress is quite significant and can have serious implications for the fatigue life of turbine blades.
- Published
- 2018
- Full Text
- View/download PDF
22. Towards the effect of climate change in structural loads of urban infrastructure: A review.
- Author
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Mishra, Varun and Sadhu, Ayan
- Subjects
STRUCTURAL failures ,INFRASTRUCTURE (Economics) ,BUILDING maintenance ,RESILIENT design ,CONSTRUCTION materials ,CLIMATE change - Abstract
• It performs a literature review on the effect of climate change on structural loads. • Various loads, including wind, snow, temperature, and multi-hazard, are considered. • A wide range of urban infrastructure from different regions is included. • It summarizes research findings aimed at building climate-resilient infrastructure. Climate change is one of the pressing problems of today's world, with its unequivocal effects. The modern urban infrastructure has also borne the brunt of the devastating impact of changing climate. The increasing number of structural failures under extreme environmental loads has been reported throughout the globe, with state-of-the-art design and maintenance practices proved to be insufficient under the dynamically changing climate, demanding more resilient design standards and maintenance procedures. This review article synthesizes the research findings aimed at building climate-resilient civil infrastructure considering the design and service phase of various structures, the durability of structural components and materials, and adaptation and mitigation practices. The paper performs a systematic literature review of the effect of climate change on various structural loads, including wind, snow, temperature, and multi-hazard, in various urban infrastructures from different regions of the globe. The findings in this review can serve as valuable information to suitably revisit and improve design and maintenance practices and build more climate-resilient urban infrastructure. [ABSTRACT FROM AUTHOR]
- Published
- 2023
- Full Text
- View/download PDF
23. Diseño de una nueva solución estructural para afrontar la problemática del aumento de las solicitaciones que los aerogeneradores transmiten a su cimentación
- Author
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Real Herráiz, Julia Irene, Andrés López, Laura, Universitat Politècnica de València. Departamento de Ingeniería e Infraestructura de los Transportes - Departament d'Enginyeria i Infraestructura dels Transports, Universitat Politècnica de València. Escuela Técnica Superior de Ingeniería del Diseño - Escola Tècnica Superior d'Enginyeria del Disseny, Colás Vaquero, Marta, Real Herráiz, Julia Irene, Andrés López, Laura, Universitat Politècnica de València. Departamento de Ingeniería e Infraestructura de los Transportes - Departament d'Enginyeria i Infraestructura dels Transports, Universitat Politècnica de València. Escuela Técnica Superior de Ingeniería del Diseño - Escola Tècnica Superior d'Enginyeria del Disseny, and Colás Vaquero, Marta
- Abstract
[ES] El objetivo del presente proyecto consiste en estudiar y determinar, mediante la modelización estructural de la torre del aerogenerador, las cargas mecánicas que se transmiten a los cimientos. De esta manera se determinan las solicitaciones a las que se verán sometidas, se definirá y analizará una nueva solución para dichas cimentaciones con un hormigón de ultra altas prestaciones. Inicialmente se estudia el estado actual del sector, con lo cual podemos ver un aumento de demanda de la energía eólica, por ello se construyen aerogeneradores que nos proporcionen más potencia, es decir, un mayor tamaño. Actualmente la solución para soportar dichas solicitaciones consiste en un aumento de la cimentación, lo cual implica un aumento en el costo del aerogenerador. Es por esto por lo que es muy necesaria la búsqueda de una solución económica para esto tipo de estructuras y en este contexto surge el proyecto. Posteriormente se realizará una modelización en ANSYS APDL de las cargas a las que está sometido el fuste y como son transmitidas a los cimientos. Teniendo en cuenta las cargas a las que se encuentran dichos cimientos, se determinan las prestaciones del nuevo hormigón UHPC. Para finalizar, se expondrá una dosificación con la que se consigue este tipo de hormigón y se establecerán las variables que afectan al comportamiento de dicho hormigón, tanto a nivel técnico como a nivel económico, ya que el objetivo es obtener una solución que sea competitiva económicamente con lo que existe actualmente., [EN] The objective of this project is to study and determine, by means of structural modelling of the wind turbine tower, the mechanical loads transmitted to the foundations. In this way, the stresses to which they will be subjected will be determined, and a new solution for these foundations will be defined and analyzed using ultra-high performance concrete. Initially, the current state of the sector is studied, with which we can see an increase in demand for wind energy, so wind turbines are built to provide us with more power, that is, a larger size. Currently, the solution to withstand such stresses is an increase in the foundation, which implies an increase in the cost of the wind turbine. This is the reason why it is very necessary to find an economic solution for this type of structures and in this context the project arises. Subsequently, an ANSYS APDL modelling of the loads to which the shaft is subjected and how they are transmitted to the foundations will be carried out. Taking into account the loads to which the foundations are subjected, the performance of the new UHPC concrete is determined. Finally, a dosage with which this type of concrete is obtained will be presented and the variables that affect the behaviour of this concrete will be established, both technically and economically, since the objective is to obtain a solution that is economically competitive with what is currently available.
- Published
- 2021
24. Reseña del libro: Análisis de estructuras con cargas dinámicas. Luis Edgardo Suárez
- Author
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Guerrero, David and Guerrero, David
- Abstract
This is an overview of the book Analysis of Structures with Dynamic Loads of the PhD. Luis Edgardo Suárez, professor at the department of civil engineering and surveying at the University of Puerto Rico, Mayagüez campus, whose publication was made in 2014. The most important aspects, concepts and procedures within the field of structure dynamics, which will serve as a solid foundation for both undergraduate and graduate level readers. Several of the topics addressed throughout the text include basic and easy-to-understand aspects since, in turn, many details and examples are presented that consolidate the learning even of certain readers who are unaware of a specific topic, La presente constituye un panorama del libro Análisis de Estructuras con Cargas Dinámicas del PhD. Luis Edgardo Suárez, profesor en el departamento de ingeniería civil y agrimensura de la Universidad de Puerto Rico, recinto universitario de Mayagüez, cuya publicación ha sido realizada en el año 2014. Se recopilan los aspectos, conceptos y procedimientos más importantes dentro del campo de la dinámica de estructuras, que servirán como cimientos sólidos tanto para lectores del nivel de pregrado como de postgrado. Varios de los temas abordados a lo largo del texto incluyen aspectos básicos y sencillos de comprender ya que a su vez, se presentan muchos detalles y ejemplos que consolidan el aprendizaje inclusive de ciertos lectores de desconocen de algún tema en específico
- Published
- 2021
25. Advanced control algorithms for reduction of wind turbine structural loads.
- Author
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Petrović, Vlaho, Jelavić, Mate, and Baotić, Mato
- Subjects
- *
WIND turbines , *MECHANICAL loads , *ROTORS , *SIMULATION methods & models , *ELECTRICAL harmonics - Abstract
To enable further growth of wind turbine dimensions and rated power, it is essential to decrease structural loads that wind turbines experience. Therefore a great portion of research is focused on control algorithms for reduction of wind turbine structural loads, but typically wind turbine rotor is considered to be perfectly symmetrical, and therefore such control algorithms cannot reduce structural loads caused by rotor asymmetries. Furthermore, typical approach in the literature is to use blade load measurements, especially when higher harmonics of structural loads are being reduced. In this paper, improvements to standard approach for reduction of structural loads are proposed. First, control algorithm capable of reducing structural loads caused by rotor asymmetries is developed, and then appropriate load transformations are introduced that enable presented control algorithms to use load measurements from various wind turbine components. Simulation results show that proposed control algorithm is capable of reducing structural loads caused by rotor asymmetries. [ABSTRACT FROM AUTHOR]
- Published
- 2015
- Full Text
- View/download PDF
26. Fully Nonlinear Seakeeping Analysis based on CFD Simulations.
- Author
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Kim, Sungeun (Peter) and Hyun-Ho Lee
- Abstract
The article focuses on a study which described the use of computation fluid dynamics (CFD) simulations in fully nonlinear seakeeping analysis. The wave elevation of the design waves were obtained from the inlet boundary which was modeled using a numerical wave probe. Nonlinear structural loads were successfully calculated from the CFD simulation using the user-defined field functions and Java macro. Three-dimensional bow slamming was also successfully simulated.
- Published
- 2011
27. Diseño de una nueva solución estructural para afrontar la problemática del aumento de las solicitaciones que los aerogeneradores transmiten a su cimentación
- Author
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Colás Vaquero, Marta
- Subjects
Ultra-High Performance Concrete ,Hormigón de ultra-alta resistencia ,Modelización ,Modelling ,INGENIERIA E INFRAESTRUCTURA DE LOS TRANSPORTES ,Wind Turbine ,Máster Universitario en Ingeniería Aeronáutica-Màster Universitari en Enginyeria Aeronàutica ,Structural loads ,Hormigón ,Aerogenerador ,Cimentación ,Cargas estructurales ,Foundations ,Concrete - Abstract
[ES] El objetivo del presente proyecto consiste en estudiar y determinar, mediante la modelización estructural de la torre del aerogenerador, las cargas mecánicas que se transmiten a los cimientos. De esta manera se determinan las solicitaciones a las que se verán sometidas, se definirá y analizará una nueva solución para dichas cimentaciones con un hormigón de ultra altas prestaciones. Inicialmente se estudia el estado actual del sector, con lo cual podemos ver un aumento de demanda de la energía eólica, por ello se construyen aerogeneradores que nos proporcionen más potencia, es decir, un mayor tamaño. Actualmente la solución para soportar dichas solicitaciones consiste en un aumento de la cimentación, lo cual implica un aumento en el costo del aerogenerador. Es por esto por lo que es muy necesaria la búsqueda de una solución económica para esto tipo de estructuras y en este contexto surge el proyecto. Posteriormente se realizará una modelización en ANSYS APDL de las cargas a las que está sometido el fuste y como son transmitidas a los cimientos. Teniendo en cuenta las cargas a las que se encuentran dichos cimientos, se determinan las prestaciones del nuevo hormigón UHPC. Para finalizar, se expondrá una dosificación con la que se consigue este tipo de hormigón y se establecerán las variables que afectan al comportamiento de dicho hormigón, tanto a nivel técnico como a nivel económico, ya que el objetivo es obtener una solución que sea competitiva económicamente con lo que existe actualmente., [EN] The objective of this project is to study and determine, by means of structural modelling of the wind turbine tower, the mechanical loads transmitted to the foundations. In this way, the stresses to which they will be subjected will be determined, and a new solution for these foundations will be defined and analyzed using ultra-high performance concrete. Initially, the current state of the sector is studied, with which we can see an increase in demand for wind energy, so wind turbines are built to provide us with more power, that is, a larger size. Currently, the solution to withstand such stresses is an increase in the foundation, which implies an increase in the cost of the wind turbine. This is the reason why it is very necessary to find an economic solution for this type of structures and in this context the project arises. Subsequently, an ANSYS APDL modelling of the loads to which the shaft is subjected and how they are transmitted to the foundations will be carried out. Taking into account the loads to which the foundations are subjected, the performance of the new UHPC concrete is determined. Finally, a dosage with which this type of concrete is obtained will be presented and the variables that affect the behaviour of this concrete will be established, both technically and economically, since the objective is to obtain a solution that is economically competitive with what is currently available.
- Published
- 2021
28. Non‐linear pitch control of wind turbines for tower load reduction.
- Author
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Xiao, Shuai, Geng, Hua, and Yang, Geng
- Abstract
As the modern wind turbines (WTs) become larger in size, the structural loads experienced by the WTs increase dramatically, which would shorten the working life of the WTs and increase the maintenance cost. To mitigate such problem, this study proposes a non‐linear pitch control strategy including tower load reducing objective for the WTs operating in the above‐rated wind speed region. The proposed non‐linear controller consists of a rotor speed regulator, a tower oscillation damper and a lead compensator. The rotor speed regulator and tower oscillation damper are designed separately based on inverse system method, which is a powerful tool in solving the control problem of non‐affine non‐linear system. The lead compensator is utilised to compensate for the phase lag of the pitch angle command caused by the pitch actuator. Furthermore, light detection and ranging (LIDAR) preview measurements are introduced to provide wind information for the proposed controller in order to improve its control performance. The simulation results with the aero‐elastic model of fatigue, aerodynamics, structures and turbulence (FAST) show that, the proposed non‐linear controller outperforms the baseline gain‐scheduled proportional–integral controller. The proposed non‐linear controller can work well in the whole above‐rated wind speed region, and is easy to implement for application. [ABSTRACT FROM AUTHOR]
- Published
- 2014
- Full Text
- View/download PDF
29. Impact of pitch actuator fault on 10-MW semi-submersible floating wind turbine.
- Author
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Li, Jiawen, Bian, Jingyu, Chuang, Zhenju, Jiang, Yichen, and Leng, Shudong
- Subjects
- *
WIND turbines , *ACTUATORS , *SERVOMECHANISMS , *BENDING moment - Abstract
The pitch actuator of the offshore wind turbine has a high failure rate, and this fault will lead to aerodynamic imbalance on the floating system, especially when the 10 MW wind turbine is applied. In this paper, the impact of actuator faults on the floating platform motion and turbine structure is investigated. The 10-MW OO-Star semi-submersible platform is used as the reference structure. The fault discussed in this study involved one blade seizing, followed by an emergency shutdown. Coupled non-linear aero-hydro-servo-elastic simulations were carried out in the time domain using OpenFAST. The platform motions and structural loads caused by the fault were compared with the normal operating conditions. The effects of the pitch rate at the initial fault on the loads of the critical components are presented. The results revealed that imbalanced loads due to blade seizing can lead to particularly large excitations of the dynamic responses of the wind turbine. The maximum lateral nacelle acceleration is increased by 27.9%. In addition, the parametric study on the effects of the pitch rate for feathering blade was carried out. It was found that the pitch rate of 8 deg/s is favorable to alleviate the structural loads. • The blade pitch actuator fault significantly excites the low-frequency motions of the 10-MW floating offshore wind turbines. • The roll and sway motions are also stimulated by the rotor aerodyanmic imbalance. • The blade flapwise bending moment, tower-top bending moment, shaft bending moment, and nacelle acceleration are amplified. • During the emergency shutdown after the fault, the blade pitch rate of 8 deg/s is favorable to feathering the blade. [ABSTRACT FROM AUTHOR]
- Published
- 2022
- Full Text
- View/download PDF
30. Experimental evaluation of slamming pressure models used in structural design of high-speed craft.
- Author
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Razola, Mikael, Rosén, Anders, and Garme, Karl
- Subjects
AERODYNAMIC load ,STRUCTURAL design ,EMPIRICAL research ,MECHANICAL loads ,FINITE element method - Abstract
In this paper a methodology that enables detailed studies of the momentary slamming pressure distribution and the related structural loads is presented. The methodology involves pressure measurements, spatial and temporal pressure distribution reconstruction, and finite element analysis. Using a set of model experiments with a high-speed planing craft towed in irregular waves, the methodology is applied to evaluate different slamming pressure models regarding their ability to accurately represent the structure loads. The slamming equivalent uniform pressure model used in the prevailing semi-empirical design methods, and non-uniform time-dependent pressure models used in a method for direct calculation, are considered. It is concluded that for smaller structure members, typically found in densely spaced metal structures, the uniform pressure model performs well with respect to accurately representing the structure loads. However, for larger members found in modern sandwich structures, the underestimation of structure loads is significant, especially with respect to the shear forces. The non-uniform pressure modeling technique is concluded to be promising regarding its ability to accurately represent the structure loads, regardless of structure member size. The presented methodology is concluded to be a useful tool in further research regarding the evaluation and development of methods for high-speed craft structural design. [ABSTRACT FROM AUTHOR]
- Published
- 2014
- Full Text
- View/download PDF
31. Multibody analyses for performance and aeromechanics of a rotor in low-speed flight.
- Author
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Park, Jae-Sang
- Subjects
DYNAMICS ,FLIGHT testing ,WIND turbines ,GEOMETRY ,COMPUTATIONAL fluid dynamics ,ROTORCRAFT - Abstract
Purpose -- This paper aims to correlate the flexible multibody analysis for the performance, blade airloads, rotor pitch control angles, and blade structural loads of a full-scale utility helicopter rotor in low-speed forward flight with wind tunnel test and flight test data. Design/methodology/approach -- A nonlinear flexible multibody dynamics analysis code, DYMORE, is used to analyze the performance and aeromechanics of a utility helicopter rotor in low-speed forward flight. The main rotor system is modeled using various multibody elements such as rigid bodies, nonlinear elastic beams, mechanical joints, and elastic springs/dampers. The freewake model is used to capture rotor wakes more elaborately in low-speed forward flight. Findings -- Fair to good correlations of rotor performance such as figure of merit in hover, rotor power, propulsive force, and lift in low-speed forward flight are achieved with sweeps of the thrust, rotor shaft tilting angle, and advance ratio, against wind tunnel test data. The blade section normal forces from the mid-span to outboard are fairly or well correlated with flight test data, but the normal force at the inboard blade station is under-predicted. The trimmed pitch control angles are reasonably predicted; however, the lateral cyclic pitch control angle is moderately under-predicted. The flap bending moments are compared fairly with measurements; however, the oscillations of the lead-lag bending and torsion moments are not captured well. Practical implications -- Reasonable predictions of the performance and aeromechanics of the rotor in low-speed forward flight will allow the flexible multibody dynamics to be used for the rotorcraft comprehensive analysis, in place of expensive flight and wind tunnel tests of the rotor. Originality/value -- Up to now, the stand-alone flexible multibody dynamics without the aid of external aerodynamic analysis has not been widely used for the analyses of rotor performance and aeromechanics in low-speed forward flight. However, the present flexible multibody dynamics analysis directly integrated with the freewake model gives fair to good correlation of the rotor performance and aeromechanics predictions in low-speed forward flight. [ABSTRACT FROM AUTHOR]
- Published
- 2014
- Full Text
- View/download PDF
32. A modelling framework for the calculation of structural loads for fatigue life prediction of helicopter airframe components
- Author
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van der Ven, H., Bakker, R.J.J., van Tongeren, J.H., Bos, M.J., and Münninghoff, N.
- Subjects
- *
AIRFRAME fatigue , *HELICOPTER design & construction , *PREDICTION models , *STRUCTURAL dynamics , *HELICOPTER flight testing , *MECHANICAL loads - Abstract
Abstract: A modelling framework for determining structural dynamic loads in airframe components has been developed. This paper addresses the flight dynamics and structural modelling tools of the framework and presents the first validation results. Validation of the calculated component strains has been done by means of comparison with strain gauge measurements on the aft-pylon engine frame during scheduled operational flights. Results show a good agreement for the 3/rev vibrations of the component. Trend analyses provides insight in weight, flight speed and altitude dependencies. The proposed framework is capable of calculating structural dynamic loads of an airframe component in a relatively simple and cost-effective way. [Copyright &y& Elsevier]
- Published
- 2012
- Full Text
- View/download PDF
33. Wind Turbine Power References in Coordinated Control of Wind Farms.
- Author
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Spudić, Vedrana, Jelavić, Mate, and Baotić, Mato
- Subjects
WIND turbines ,ELECTRIC power production ,WIND power plants ,WINDMILLS ,PREDICTIVE control systems - Abstract
Copyright of Automatika: Journal for Control, Measurement, Electronics, Computing & Communications is the property of Taylor & Francis Ltd and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
- Published
- 2011
- Full Text
- View/download PDF
34. WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES
- Author
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Sung Boo Park, Kwang Hyo Jung, and Mun Sung Kim
- Subjects
Coupled motion ,Mechanical Engineering ,Relative motion ,lcsh:Naval architecture. Shipbuilding. Marine engineering ,020101 civil engineering ,Ocean Engineering ,02 engineering and technology ,Mechanics ,coupled motion ,hydrodynamic interaction ,relative motion ,structural loads ,0201 civil engineering ,Structural load ,lcsh:VM1-989 ,Submarine pipeline ,Geology - Abstract
As oil or gas field moves deeper offshore area, offshore offloading operations such as Tandem or Side-by-Side arrangement between two floating structures take place in many locations throughout the world and also have many hydrodynamic problems. Therefore, the researches on the motion response and hydrodynamic force including first and second order between two floating structures are needed to have the more safe offloading operability in waves. In this paper, prediction of wave induced motion responses and structural loads at mid-ship section with hydrodynamic interaction effect between two offshore floating structures in various heading waves are studied by using a linearized three-dimensional potential theory. Numerical calculations using three-dimensional pulsating source distribution techniques have been carried out for hydrodynamic pressure distribution, wave exciting force, twelve coupled linear motion responses, relative motions and wave loads of the barge and the ship in oblique waves. The computational results give a good correlation with the experimental results and also with other numerical results. As a result, the present computational tool can be used effectively to predict the wave induced motions and structural loads of multiple offshore floating structures in waves.
- Published
- 2018
35. Strongly coupled fluid–structure interaction method for structural loads on surface ships
- Author
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Paik, Kwang-Jun, Carrica, Pablo M., Lee, Donghee, and Maki, Kevin
- Subjects
- *
MECHANICAL loads , *SHIPS , *COMPUTATIONAL fluid dynamics , *MODAL superposition method , *HYDRODYNAMICS , *HULLS (Naval architecture) , *BENDING moment , *TRANSFER functions - Abstract
Abstract: A method to compute structural loads on surface ships coupling a CFD solver with rigid or elastic representations of the ship hull is presented. One-way and two-way coupling approaches were used for the cases when the ship was considered elastic, in which the forces obtained from the CFD solver were used to compute the structural loads. In the two-way coupling method the hull deformation influenced the CFD solution, while in the one-way coupling method this feedback was not needed. The flow field around the ship was calculated with the URANS/DES overset solver CFDShip-Iowa version 4, with the structural response obtained using modal superposition. Predictions of ship motions and structural loads were compared with available experimental data for the S175 containership, obtained from a segmented elastic model. Predicted heave and pitch transfer functions in regular waves matched well with the experimental values. The computations showed that slamming events greatly affected the vertical bending moment amplitude, showing sharp peaks for the rigid model. The elastic models predicted well the ringing of the structure and showed that the ringing was mainly triggered by bow flare slamming. The one-way coupled approach with a virtual mass correction provided a solution that in some aspects had almost the same quality as the two-way coupled solution, at a fraction of the cost. [Copyright &y& Elsevier]
- Published
- 2009
- Full Text
- View/download PDF
36. A consistent model for the codification of wind loads
- Author
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Kasperski, M.
- Subjects
- *
WIND pressure , *PRESSURE , *AERODYNAMIC load , *DRAG (Aerodynamics) - Abstract
Abstract: A wind load code has to provide information on the appropriate design wind actions for different purposes: the design of the cladding, the design of the support of the load bearing structure and the design of the load bearing structure itself. Strictly speaking, for each task a different pressure coefficient is required. The paper presents a concept that recently has been adopted in the draft of ISO 4354. Basic idea is to specify non-simultaneous extremes for the local pressures in tables and give additionally figures for simultaneous pressure distributions. All pressure coefficients are introduced as appropriate fractile values of the extremes. The simultaneous distributions are identified with the LRC-method. [Copyright &y& Elsevier]
- Published
- 2007
- Full Text
- View/download PDF
37. Downburst versus boundary layer induced wind loads for tall buildings.
- Author
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Jongdae Kim, Hangan, Horia, and Ho, T. C. Eric
- Subjects
MICROBURSTS ,WIND pressure ,BOUNDARY layer (Aerodynamics) ,TALL buildings ,BUILDINGS - Abstract
Downbursts are transient phenomena that produce wind profiles that are distinctly different from synoptic boundary layers. Wind field data from Computational Fluid Dynamics (CFD) simulations of isolated downburst-like impinging jets, are used to investigate structural loads of tall buildings due to these high intensity winds. The base shear forces and base moments of tall buildings of heights between 120 and 250 m produced by downburst winds of various scales are compared with the forces from the equivalent boundary layer gust winds, with matched 10-metre wind velocity. The wind profiles are mainly functions of the size of the downburst and the radial distance from the centre of the storm. Wind forces due to various downburst profiles are investigated by placing the building at different locations relative to the storm center as well as varying the size of the downburst. Overall it is found that downbursts larger than approx. 2,000m in diameter might produce governing design wind loads above those from corresponding boundary layer winds for tall buildings. [ABSTRACT FROM AUTHOR]
- Published
- 2007
- Full Text
- View/download PDF
38. Health-aware fault-tolerant receding horizon control of wind turbines
- Author
-
Joseph J. Yame, Tushar Jain, Indian Institute of Technology Mandi (IIT Mandi), Centre de Recherche en Automatique de Nancy (CRAN), and Centre National de la Recherche Scientifique (CNRS)-Université de Lorraine (UL)
- Subjects
Fault-tolerant control ,0209 industrial biotechnology ,Optimization problem ,Computer science ,Self-healing ,02 engineering and technology ,Fault (power engineering) ,7. Clean energy ,Turbine ,[SPI.AUTO]Engineering Sciences [physics]/Automatic ,Reduction (complexity) ,Wind turbine converters ,020901 industrial engineering & automation ,Control theory ,0202 electrical engineering, electronic engineering, information engineering ,Electrical and Electronic Engineering ,Fault diagnosis ,Wind power ,business.industry ,Applied Mathematics ,020208 electrical & electronic engineering ,Fault tolerance ,Receding horizon control ,Computer Science Applications ,Renewable energy systems ,Health aware control ,Control and Systems Engineering ,Filter (video) ,Convex optimization ,Structural loads ,business - Abstract
International audience; Actuator faults in wind turbines (WT) significantly increase the structural loads exhibited by torsional vibration and tower fore-aft bending, thereby, drastically hampering the turbine health in terms of the reduction in its lifetime. This paper presents a health-aware fault-tolerant control (HAFTC) scheme for WT such that the turbine health, i.e., power maximization and fatigue reduction, can be achieved even under the event of bias faults in converter actuator. The proposed HAFTC system is built upon two interconnected modules: fault diagnosis and controller reconfiguration. The latter module is developed using a receding horizon control technique where the underlying optimization problem is not convex. The originality of the proposed scheme lies in the transformation of the initial non-convex optimization problem into a convex problem. The former module extracts the complete information of the fault, which is constructed using an unknown-input-observer based residual filter and a specific fault-estimation filter. A 2MW WT system is used to demonstrate the effectiveness of the HAFTC scheme.
- Published
- 2020
- Full Text
- View/download PDF
39. Interpolation of pressure time series in an aerodynamic database for low buildings
- Author
-
Chen, Yingzhao, Kopp, Gregory A., and Surry, David
- Subjects
- *
TIME series analysis , *ARTIFICIAL neural networks - Abstract
Database-assisted design (DAD) is a relatively new concept whereby archived pressure time series from wind tunnel experiments are used directly in structural analysis software for the design of a structure. The US National Institute of Standards and Technology (NIST) is currently creating an aerodynamic database of wind-induced pressure time series on the envelope of various low buildings. In order for DAD to be of practical use, simple interpolation schemes must be used to cover the wide range of low building geometries a designer may desire since only relatively few geometries could be included in any database. The approach investigated herein consists of using a set of re-scaled pressure time series from an aerodynamically similar building at the same wind angle and in the same terrain. The set of reference time series are corrected by adjusting their mean and rms. pressure coefficients with artificial neural network models which have captured the variability of these statistical parameters. The use of the re-scaled time series is a simple way to get the correct spatial correlations for the interpolated building without resorting to more elaborate simulation schemes. However, interpolation must be limited to situations where the spatial correlations are similar. The methodology was applied to two test cases with reasonable success. [Copyright &y& Elsevier]
- Published
- 2003
- Full Text
- View/download PDF
40. Peculiarities of strained state of the buggy undercarriage under torsional loading
- Author
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Bazhenov, E., Eng, D., Bujnachev, S., Kustovsky, A., Bazhenov, E., Eng, D., Bujnachev, S., and Kustovsky, A.
- Abstract
This paper deals with the traits of strained state of buggy undercarriage torsional loading. The buggy undercarriage represents a tubular space frame consisting of round cross-section elements. The strained state of the buggy space frame can be characterized by a number of specific features such as: a centerline distortion and front sub-frame cross-sections twisting about their own pivot points. The possible reasons for it are considered as well as their negative effects. Practical recommendations to minimize the negative effects are proposed. All the represented results are obtained with the help of a computer simulation technique based on the finite element method. © 2019 Published under licence by IOP Publishing Ltd.
- Published
- 2019
41. Optimal Wind Turbine Control Supported with LIDAR Sensor Measurements
- Author
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Kušenić, Matko and Baotić, Mato
- Subjects
model predictive control ,modelsko prediktivno upravljanje ,TEHNIČKE ZNANOSTI. Elektrotehnika ,strukturna opterećenja ,predikcija brzine vjetra ,wind speed estimation ,LIDAR ,wind turbine ,vjetroagregat, strukturna opterećenja, LIDAR, predikcija brzine vjetra, modelsko prediktivno upravljanje, FAST ,MPC ,structural loads ,TECHNICAL SCIENCES. Electrical Engineering ,FAST ,vjetroagregat - Abstract
U svijetu postoji sve veća potreba za električnom energijom, a sve se više električne energije dobiva iskorištavanjem energije vjetra pomoću vjetroagregata. Dimenzije vjetroagregata su sve veće kako bi se povećala iskoristivost i smanjili troškovi proizvodnje električne energije. S porastom dimenzija vjetroagregata rastu i opterećenja koja konstrukcija vjetroagregata mora trpiti kao posljedicu nejednolike distribucije vjetra na rotoru vjetroagregata. LIDAR sustavi mogu mjeriti karakteristike vjetra na određenoj udaljenosti ispred vjetroagregata i tako pružiti informaciju o vjetru prije nego dođe do njegovog utjecaja na vjetroagregat. U ovom je radu korišten modelski prediktivni regulator (MPC) kako bi se ostvarilo optimalno upravljanje vjetroagregatom, tj. maksimiziralo iskorištenje energije vjetra uz smanjenje strukturnih opterećenja vjetroagregata. U optimizacijski problem je uključena predikcija vjetra pomoću LIDAR senzora. Za simulaciju cijelog sustava koristi se Matlab u sprezi s programskim paketom FAST. The increasing energy production by wind turbines is induced by the ever increasing growth in demand for electric energy. To meet those demands the efficiency of the energy production should be improved and the costs should be reduced. As a consequence, the wind turbine sizes are constantly increasing. Unfortunately, the aerodynamic loadings caused by a non-uniform wind distribution on the wind turbine rotor are consequently becoming an increasing concern. Since LIDAR systems can obtain a preview of wind measurements they can provide information about wind characteristics before the wind turbine is affected by it. In this thesis a Model Predictive Controller (MPC) is developed for optimal wind turbine control in order to maximize electrical energy production and reduce fatigue structural loads. The optimization problem utilizes preview LIDAR measurements. The designed controller is tested in Matlab coupled with FAST simulation software.
- Published
- 2017
42. Identification of Simplified Wind Turbine Dynamical Model and Model Predictive Controller Synthesis
- Author
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Kvesić, Marijo and Perić, Nedjeljko
- Subjects
TEHNIČKE ZNANOSTI. Elektrotehnika ,strukturna opterećenja ,modelski prediktivni regulator ,vjetroagregat, strukturna opterećenja, modelski prediktivni regulator, upravljački problem, kriterijska funkcija, ograničenja ,Cost Function ,upravljački problem ,kriterijska funkcija ,Structural Loads ,ograničenja ,TECHNICAL SCIENCES. Electrical Engineering ,Wind Turbine ,Limitations ,Model Predictive Controller ,Vjetroagregat - Abstract
Porastom dimenzija vjetroagregata povećavaju se i opterećenja što smanjuje životni vijek vjetroagregata. Klasični regulatori ne uspijevaju dovoljno dobro smanjiti opterećenja. Stoga se sve češće koriste modelski prediktivni regulatori (MPC). MPC omogućuje optimalno praćenje reference uz smanjenje strukturnih opterećenja. Poznavanje modela, upravljački problem i rješavanje upravljačkog problema glavni su elementi sinteze MPC regulatora. U ovom radu korišten je nelinearni model kojeg je potrebno linearizirati te diskretizirati jer se upravljački problem rješava na računali. Upravljački problem sadrži kriterijsku funkciju te ograničenja varijabli. Oba segmenta upravljačkog problema su bitna jer lošim odabirom računalo neće moći naći optimalne iznose upravljačkih varijabli, a da pritom varijable ostanu unutar zadanih ograničenja. Increasingly larger wind turbines have to withstand larger structural loads. Classic controllers are unable to cope with structural load and the need for new control method is rising. One of the solutions is model predictive controller (MPC). MPC calculates optimal trajectory while reducing structural loads. Wind turbine is non-linear system. Linearising model computer can faster compute cost function. Since computer is solving MPC problem, model has to be discrete. Both, cost function and limitations has to be carefully chosen. If limitations are to strict algorithm will not be able to calculate optimal vector of control inputs and if limitations are to big, algorithm will not reduce structural loads.
- Published
- 2017
43. Development of Instrumented Running Prosthetic Feet for the Collection of Track Loads on Elite Athletes †.
- Author
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Petrone, Nicola, Costa, Gianfabio, Foscan, Gianmario, Gri, Antonio, Mazzanti, Leonardo, Migliore, Gianluca, and Cutti, Andrea Giovanni
- Subjects
ARTIFICIAL feet ,ELITE athletes ,STRAIN gages ,SPRINTING ,FOOTBRIDGES ,DATA recorders & recording ,SPORTS nutrition - Abstract
Knowledge of loads acting on running specific prostheses (RSP), and in particular on running prosthetic feet (RPF), is crucial for evaluating athletes' technique, designing safe feet, and biomechanical modelling. The aim of this work was to develop a J-shaped and a C-shaped wearable instrumented running prosthetic foot (iRPF) starting from commercial RPF, suitable for load data collection on the track. The sensing elements are strain gauge bridges mounted on the foot in a configuration that allows decoupling loads parallel and normal to the socket-foot clamp during the stance phase. The system records data on lightweight athlete-worn loggers and transmits them via Wi-Fi to a base station for real-time monitoring. iRPF calibration procedure and static and dynamic validation of predicted ground-reaction forces against those measured by a force platform embedded in the track are reported. The potential application of this wearable system in estimating determinants of sprint performance is presented. [ABSTRACT FROM AUTHOR]
- Published
- 2020
- Full Text
- View/download PDF
44. The Impact of Pitch-To-Stall and Pitch-To-Feather Control on the Structural Loads and the Pitch Mechanism of a Wind Turbine.
- Author
-
Samani, Arash E., De Kooning, Jeroen D. M., Kayedpour, Nezmin, Singh, Narender, and Vandevelde, Lieven
- Subjects
HORIZONTAL axis wind turbines ,WIND turbines ,WIND turbine blades ,WIND speed ,ROLLER bearings - Abstract
This article investigates the impact of the pitch-to-stall and pitch-to-feather control concepts on horizontal axis wind turbines (HAWTs) with different blade designs. Pitch-to-feather control is widely used to limit the power output of wind turbines in high wind speed conditions. However, stall control has not been taken forward in the industry because of the low predictability of stalled rotor aerodynamics. Despite this drawback, this article investigates the possible advantages of this control concept when compared to pitch-to-feather control with an emphasis on the control performance and its impact on the pitch mechanism and structural loads. In this study, three HAWTs with different blade designs, i.e., untwisted, stall-regulated, and pitch-regulated blades, are investigated. The control system is validated in both uniform and turbulent wind speed. The results show that pitch-to-stall control enhances the constant power control for wind turbines with untwisted and stall-regulated blade designs. Stall control alleviates the fore-aft tower loading and the blades flapwise moment of the wind turbine with stall-regulated blades in uniform winds. However, in turbulent winds, the flapwise moment increases to a certain extent as compared to pitch-to-feather control. Moreover, pitch-to-stall control considerably reduces the summed blade pitch movement, despite that it increases the risk of surface damage in the rolling bearings due to oscillating movements with a small amplitude. [ABSTRACT FROM AUTHOR]
- Published
- 2020
- Full Text
- View/download PDF
45. Cavitation bubble dynamics and structural loads of high-speed water entry of a cylinder using fluid-structure interaction method.
- Author
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Sun, Tiezhi, Zhou, Li, Yin, Zhihong, and Zong, Zhi
- Subjects
- *
BUBBLE dynamics , *FLUID-structure interaction , *CAVITATION , *STRESS concentration , *STRUCTURAL dynamics , *IMPACT loads - Abstract
• Fluid–Structure Interaction method for predicting high-speed water entry problem is • Comparison between CFD and FSI of high-speed water entry of cylinder are investigated. • Detailed description of von Mises stress over the cylinder at high entry velocity is presented. • The effects of the water-entry velocity on the cavity evolution, motion, and structural response of the cylinder are analyzed. This paper describes an investigation of the motion, structural response, and cavitation bubble evolution of a cylinder in the high-speed water entry (HSWE) process using a fluid-structure interaction (FSI) method. The effectiveness and accuracy of the FSI method are verified by comparison with experimental results available in the literature. The results show that the cylinder structure is deformed when considering the coupling effect between the fluid and the structure, and the impact load during water entry presents obvious fluctuation characteristics. Meanwhile, the von Mises stress distribution on the two end faces of the cylinder is in a ring shape and propagates as the structure deforms. Moreover, the cavitation bubble dynamics, motion and structural loads of the cylinder under different water entry velocities are investigated. The load at the initial stage is greater with the increase of the water entry velocity, which in turn leads to more significant fluctuation characteristics, thereby increasing the deformation of the structure. [ABSTRACT FROM AUTHOR]
- Published
- 2020
- Full Text
- View/download PDF
46. A class of models to predict the normal force and torque under torsional loading of a viscoelastic liquid
- Author
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Karthik Monigari and Krishna Kannan
- Subjects
Universal solution ,Constitutive equation ,Class (philosophy) ,Hydroelasticity ,Viscoelasticity ,Torsional deformations ,Thermodynamic framework ,Torque ,Constitutive equations ,General Materials Science ,Normal forces ,Mechanical behavior ,Reasonable accuracy ,Physics ,Normal force ,Mechanical Engineering ,Work (physics) ,General Engineering ,Asphalt ,Mechanics ,Universal relation ,Nonlinear system ,Classical mechanics ,Mechanics of Materials ,Viscoelastic bodies ,Torsional loadings ,Structural loads ,Forecasting - Abstract
Viscoelastic liquids exhibit diverse mechanical behavior and offers a tremendous challenge in modeling its nonlinear response. This work is concerned with the development of a class of constitutive equations for viscoelastic liquids, which can capture the nonlinear response, especially, under torsional loading. By extending a universal solution developed by Rivlin (1948) for elastic bodies under torsional loading to viscoelastic bodies, one can arrive at a constitutive equation that can simultaneously predict torque and normal force with a reasonable accuracy. In order to develop such a constitutive equation, a suitable thermodynamical framework developed by Rajagopal and Srinivasa (2000) is chosen because of the fact that it can be used to exploit the mentioned result of Rivlin. Consequently, a suitable rate-type constitutive equation is also derived in Section 5. The efficacy of the developed model is checked by comparing the predictions of the model with that of the experimental data for torsional deformation of asphalt. It is found that the predictions of the model agree reasonably with that of the experimental data. � 2013 Elsevier Ltd. All rights reserved.
- Published
- 2013
- Full Text
- View/download PDF
47. Sensitivity Analysis of Material and Load Parameters to Fatigue Stresses of an Offshore Wind Turbine Monopile Substructure
- Author
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Ana Glisic, Michael Beer, Peter Schaumann, Matteo Broggi, and Publica
- Subjects
Engineering ,0211 other engineering and technologies ,Structural analysis ,02 engineering and technology ,01 natural sciences ,Turbine ,Stress (mechanics) ,Wave load ,Wind turbines ,Fatigue damage ,Geotechnical engineering ,14. Life underwater ,Sensitivity (control systems) ,0101 mathematics ,Konferenzschrift ,Offshore wind energy ,021106 design practice & management ,Offshore wind turbines ,Wind power ,Off-shore wind energy ,business.industry ,Elastic moduli ,Realistic modelling ,General Medicine ,Structural engineering ,Uncertainties ,Ocean currents ,010101 applied mathematics ,Offshore wind power ,Structural load ,13. Climate action ,Structural loads ,Structural dynamics ,Uncertainty analysis ,Monopile substructure ,Monopile ,Sensitivity analysis ,Wind turbine towers ,business ,Significant wave height ,Material properties ,ddc:600 ,Wave characteristics - Abstract
Steel monopiles are support structures mostly applied for offshore wind turbines. Their installation is straightforward, in particular, in shallow and medium waters. While the wind turbine tower is primarily affected by wind, the wave loads are dominant for the monopile, as it is submerged to a large extent. This study deals with the influence of uncertainties in material and load parameters on the behaviour of those structures. It is investigated how the scattering of material properties (namely Young's modulus of elasticity) affect the structural response. In addition, loads with different characteristics are applied, and it is examined how the changes in loads influence the structural response. The analysed output data of interest are the extreme stresses leading to the accumulation of fatigue damage. In order for a realistic modelling, wave loads are considered with irregular sea states with different wave characteristics (significant wave heights and wave peak periods). The final aim of the analysis is to classify the effects of specific wave characteristics on the stresses by means of a sensitivity analysis. The analysis shows that variations in the wave peak period have the strongest influence on stress outputs. This effect results from the strong sensitivity of the structural dynamical response to the decrease of the difference between the values of the wave peak frequency and the natural frequencies of the structure. © 2017 The Authors. Published by Elsevier Ltd.
- Published
- 2017
- Full Text
- View/download PDF
48. Sensitivity Analysis of Material and Load Parameters to Fatigue Stresses of an Offshore Wind Turbine Monopile Substructure
- Author
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Glišić, A., Schaumann, P., Broggi, M., Beer, M., Glišić, A., Schaumann, P., Broggi, M., and Beer, M.
- Abstract
Steel monopiles are support structures mostly applied for offshore wind turbines. Their installation is straightforward, in particular, in shallow and medium waters. While the wind turbine tower is primarily affected by wind, the wave loads are dominant for the monopile, as it is submerged to a large extent. This study deals with the influence of uncertainties in material and load parameters on the behaviour of those structures. It is investigated how the scattering of material properties (namely Young's modulus of elasticity) affect the structural response. In addition, loads with different characteristics are applied, and it is examined how the changes in loads influence the structural response. The analysed output data of interest are the extreme stresses leading to the accumulation of fatigue damage. In order for a realistic modelling, wave loads are considered with irregular sea states with different wave characteristics (significant wave heights and wave peak periods). The final aim of the analysis is to classify the effects of specific wave characteristics on the stresses by means of a sensitivity analysis. The analysis shows that variations in the wave peak period have the strongest influence on stress outputs. This effect results from the strong sensitivity of the structural dynamical response to the decrease of the difference between the values of the wave peak frequency and the natural frequencies of the structure. © 2017 The Authors. Published by Elsevier Ltd.
- Published
- 2017
49. Solar Decathlon 2017 D-6: reACT Structural Design Calculations
- Author
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Team reACT, Binder, Michael P, Team reACT, Vlajnic, Ana, Team reACT, Binder, Michael P, Team reACT, and Vlajnic, Ana
- Abstract
Complete structural design, including structural calculations and specifications, stamped by a design professional licensed to stamp residential structural drawings and calculations in the team’s authority having jurisdiction and with educational and professional qualifications comparable to those required for licensure in the state of Colorado, and demonstrating compliance with the Solar Decathlon Building Code.
- Published
- 2017
50. Optimalno upravljanje vjetroagregatom uz ograničavanje strukturnih opterećenja
- Author
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Bego, Tena and Perić, Nedjeljko
- Subjects
wind turbine ,parameter identification ,structural loads ,TECHNICAL SCIENCES. Electrical Engineering ,model predictive control ,modelsko prediktivno upravljanje ,TEHNIČKE ZNANOSTI. Elektrotehnika ,strukturna opterećenja ,vjetroagregat ,identifikacija parametara ,identifi kacija parametara ,strukturna optere ćenja - Abstract
U posljednje vrijeme javlja se trend porasta dimenzija vjetroagregata, a zbog nemogućnosti klasičnih metoda upravljanja da se nose sa sve izraženijom elastičnošću tornja i lopatica javlja se potreba za novim metodama upravljanja. U ovom radu definiran je nelinearni matematički model vjetroagregata s tri stupnja slobode: rotacija rotora oko glavne osi rotacije te njihanje tornja i lopatica i identificirani su njegovi parametri. Model je lineariziran i izračunat je zapis u prostoru stanja te je projektiran optimalni regulator koji koristi kvadratni kriterij i ograničenja tipa nejednadžbi. Korištenjem takvog regulatora mogu se smanjiti strukturna ograničenja i očuvati konstrukcija. With recent trends of increasingly large wind turbines coupled with the inability of classical control methods to handle the increased elasticity of the tower and the blades, the need for new control methods is rising. This thesis defines a non-linear wind turbine model with three degrees of freedom: rotor rotation around main axes and flexibility of the tower and the blades, and identifies model parameters. The model is first linearized, state space representation is calculated and finally an optimal controller is designed using quadratic criterion and inequality constraints. Use of such controller can lessen structural loads and maintain integrity of turbine construction.
- Published
- 2016
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