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High sampling-rate measurement of turbulence velocity fluctuations in Mach 1.8 Laval jet using interferometric Rayleigh scattering 被引量:4

High sampling-rate measurement of turbulence velocity fluctuations in Mach 1.8 Laval jet using interferometric Rayleigh scattering
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摘要 Interferometric Rayleigh scattering diagnostic technique for the time-resolved measurement of flow velocity is studied. Theoretically, this systematic velocity-measured accuracy can reach up to 1.23 m/s. Measurement accuracy is then evaluated by comparing with hot wire anemometry results. Moreover, the distributions of velocity and turbulence intensity in a supersonic free jet from a Laval nozzle with a Mach number of 1.8 are also obtained quantitatively. The sampling rate in this measurement is determined to be approximately 10 k Hz. Interferometric Rayleigh scattering diagnostic technique for the time-resolved measurement of flow velocity is studied. Theoretically, this systematic velocity-measured accuracy can reach up to 1.23 m/s. Measurement accuracy is then evaluated by comparing with hot wire anemometry results. Moreover, the distributions of velocity and turbulence intensity in a supersonic free jet from a Laval nozzle with a Mach number of 1.8 are also obtained quantitatively. The sampling rate in this measurement is determined to be approximately 10 k Hz.
作者 Li Chen Fu-Rong Yang Tie Su Wei-Yi Bao Bo Yan Shuang Chen Ren-Bing Li 陈力;杨富荣;苏铁;鲍伟义;闫博;陈爽;李仁兵(China Aerodynamics Research and Development Center, Mianyang 621000, China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第2期341-344,共4页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.11272337)
关键词 Fabry–Pérot interferometer Rayleigh scattering time-resolved velocity measurement turbulence Fabry–Pérot interferometer Rayleigh scattering time-resolved velocity measurement turbulence
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