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Determination of correlation functions of turbulent velocity and sound speed fluctuations by means of ultrasonic technique

机译:利用超声技术确定湍流速度与声速波动的相关函数

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摘要

An experimental study of the propagation of high-frequency acoustic waves through grid-generated turbulence by means of an ultrasound technique is discussed. Experimental data were obtained for ultrasonic wave propagation downstream of heated and non-heated grids in a wind tunnel. A semi-analytical acoustic propagation model that allows the determination of the spatial correlation functions of the flow field is developed based on the classical flowmeter equation and the statistics of the travel time of acoustic waves traveling through the kinematic and thermal turbulence. The basic flowmeter equation is reconsidered in order to take into account sound speed fluctuations and turbulent velocity fluctuations. It allows deriving an integral equation that relates the correlation functions of travel time, sound speed fluctuations and turbulent velocity fluctuations. Experimentally measured travel time statistics of data with and without grid heating are approximated by an exponential function and used to analytically solve the integral equation. The reconstructed correlation functions of the turbulent velocity and sound speed fluctuations are presented. The power spectral density of the turbulent velocity and sound speed fluctuations are calculated.
机译:讨论了利用超声技术对高频声波通过格栅产生的湍流传播的实验研究。获得了超声波数据在风洞中加热和未加热网格下游传播的实验数据。基于经典流量计方程以及通过运动和热湍流传播的声波的传播时间的统计数据,开发了一种可以确定流场的空间相关函数的半解析声传播模型。为了考虑声速波动和湍流波动,重新考虑了基本流量计方程。它允许导出一个积分方程,该积分方程将传播时间,声速波动和湍流速度波动的相关函数联系起来。实验测量的带有或不带有网格加热的数据的行进时间统计量通过指数函数近似,并用于解析求解积分方程。给出了湍流速度和声速波动的重构相关函数。计算出湍流速度和声速波动的功率谱密度。

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