22 results on '"Xiong, Jiecheng"'
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2. Multi-index fusion database and intelligent evaluation modelling for geostress classification
3. Aftershock ground motion prediction model based on conditional convolutional generative adversarial networks
4. Constitutive modeling of weak interlayer zone subject to unloading stress paths in underground excavation based on modified equivalent plastic work
5. Prediction for underground seismic intensity measures using conditional generative adversarial networks
6. Tunnel lining crack detection model based on improved YOLOv5
7. Probabilistic modeling of long-term joint wind and wave load conditions via generative adversarial network
8. Investigation on uncoordinated deformation and failure mechanism and damage modeling of rock mass with weak interlayer zone
9. Mechanical response and data-driven fatigue model of interlayer soils in track-bed considering multi-factor coupling effect
10. Theoretical solution and failure analysis of water pressure on lining of deep-buried non-circular hydraulic tunnel based on the equivalent hydraulic radius method
11. Multi-mode response spectrum for multi-harmonic crowd jumping loads
12. A Review of Evaluation Methods of Standards for Structural Vibration Serviceability under Crowd Walking
13. Experimental investigation on flexural performance of concrete beams strengthened with SMA-GFRP-ECC smart composite materials.
14. Spectral analysis of human-structure interaction during crowd jumping
15. Random field model for crowd jumping loads
16. A Fourier Series-Based Multi-Point Excitation Model for Crowd Jumping Loads.
17. Equivalent Dynamic Load Factor of Different Non-Exceedance Probability for Crowd Jumping Loads
18. Open Access and Updated Human-Induced Load Data Set
19. Generative Adversarial Networks-Based Stochastic Approach to the Modeling of Individual Jumping Loads
20. Spectral Model for Crowd Walking Load
21. A Generative Adversarial Network Model for Simulating Various Types of Human-Induced Loads
22. Power Spectral Density Function for Individual Jumping Load
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