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Advanced Laser-Based Techniques for Gas-Phase Diagnostics in Combustion and Aerospace Engineering
- Source :
- Applied spectroscopy. 71(3)
- Publication Year :
- 2017
-
Abstract
- Gaining information of species, temperature, and velocity distributions in turbulent combustion and high-speed reactive flows is challenging, particularly for conducting measurements without influencing the experimental object itself. The use of optical and spectroscopic techniques, and in particular laser-based diagnostics, has shown outstanding abilities for performing non-intrusive in situ diagnostics. The development of instrumentation, such as robust lasers with high pulse energy, ultra-short pulse duration, and high repetition rate along with digitized cameras exhibiting high sensitivity, large dynamic range, and frame rates on the order of MHz, has opened up for temporally and spatially resolved volumetric measurements of extreme dynamics and complexities. The aim of this article is to present selected important laser-based techniques for gas-phase diagnostics focusing on their applications in combustion and aerospace engineering. Applicable laser-based techniques for investigations of turbulent flows and combustion such as planar laser-induced fluorescence, Raman and Rayleigh scattering, coherent anti-Stokes Raman scattering, laser-induced grating scattering, particle image velocimetry, laser Doppler anemometry, and tomographic imaging are reviewed and described with some background physics. In addition, demands on instrumentation are further discussed to give insight in the possibilities that are offered by laser flow diagnostics.
- Subjects :
- Materials science
Technische Fakultät
02 engineering and technology
Combustion
01 natural sciences
law.invention
Physics::Fluid Dynamics
010309 optics
symbols.namesake
law
0103 physical sciences
Physics::Atomic Physics
Rayleigh scattering
Aerospace engineering
Instrumentation
Spectroscopy
Scattering
business.industry
Pulse duration
Laser Doppler velocimetry
021001 nanoscience & nanotechnology
Laser
Particle image velocimetry
symbols
ddc:620
0210 nano-technology
business
Raman scattering
Subjects
Details
- ISSN :
- 19433530
- Volume :
- 71
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Applied spectroscopy
- Accession number :
- edsair.doi.dedup.....3ec3d25e6cb064d69f8f8d2fb14bf3da