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Doppler spectra of airborne sound backscattered by the free surface of a shallow turbulent water flow

机译:由浅湍流水流自由表面反向散射的空气声的多普勒频谱

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摘要

Measurements of the Doppler spectra of airborne ultrasound backscattered by the rough dynamic surface of a shallow turbulent flow are presented in this paper. The interpretation of the observed acoustic signal behavior is provided by means of a Monte Carlo simulation based on the Kirchhoff approximation and on a linear random-phase model of the water surface elevation. Results suggest that the main scattering mechanism is from capillary waves with small amplitude. Waves that travel at the same velocity of the flow, as well as dispersive waves that travel at a range of velocities, are detected, studied and used in the acoustic Doppler analysis. The dispersive surface waves are not observed when the flow velocity is slow compared to their characteristic velocity. Relatively wide peaks in the experimental spectra also suggest the existence of nonlinear modulations of the short capillary waves, or their propagation in a wide range of directions. The variability of the Doppler spectra with the conditions of the flow can affect the accuracy of the flow velocity estimations based on backscattering Doppler. A set of different methods to estimate this velocity accurately and remotely at different ranges of flow conditions is suggested.
机译:本文介绍了在湍流较浅的粗糙动态表面后向散射的机载超声多普勒光谱的测量结果。借助基于基尔霍夫(Kirchhoff)近似和水面高程的线性随机相位模型的蒙特卡罗模拟,可以对观察到的声信号行为进行解释。结果表明,主要的散射机制是由振幅小的毛细管波引起的。以相同的流速传播的波以及以一定速度传播的色散波被检测,研究并用于声学多普勒分析。当流速慢于其特征速度时,不会观察到弥散性表面波。实验光谱中相对较宽的峰也表明存在短毛细管波的非线性调制,或它们在宽范围内的传播。多普勒频谱随流动条件的变化会影响基于反向散射多普勒的流速估计的准确性。建议使用一组不同的方法,以在不同的流动条件范围内准确,远程地估算该速度。

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