A new optical measurement method for local wall shear stress and its signal processing techniques

K. Shirai
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Abstract

A new optical measurement method for local wall shear stress is proposed. The method is an extension of laser Doppler technique. It has a possibility of detecting the both magnitude and angle of local wall shear stress. The principle was investigated for Doppler frequency and measurement volume. The Doppler frequency changes in a Doppler burst signal. The frequency variation depends on the magnitude and angle of local wall shear stress and the spanwise offset of scattering particle path. A signal processing technique is proposed to detect the magnitude and the angle of local wall shear stress. The technique consists of detecting Doppler frequency variation by time-frequency analysis and nonlinear least squares fit. A simulation was conducted to investigate the performance of the method. Simulated Doppler signals were generated by using the instantaneous velocity data of a fluid-flow simulation result. The generated signals with different noise levels were processed and the effect of the noise level was investigated. The local wall shear stress was estimated with moderate accuracy but its angle was not estimated with good accuracy. A further investigation is required to improve the accuracy of measurement for the method.
一种新的局部壁面剪应力光学测量方法及其信号处理技术
提出了一种新的墙体局部剪应力光学测量方法。该方法是激光多普勒技术的延伸。它具有检测局部壁剪应力大小和角度的可能性。研究了多普勒频率和测量体积的原理。在多普勒突发信号中,多普勒频率发生变化。频率的变化取决于局部壁剪应力的大小和角度以及散射粒子路径的展向偏移量。提出了一种检测墙体局部剪应力大小和剪应力角度的信号处理方法。该技术由时频分析和非线性最小二乘拟合检测多普勒频率变化组成。通过仿真研究了该方法的性能。利用流体流动模拟结果的瞬时速度数据生成模拟多普勒信号。对产生的不同噪声水平的信号进行处理,研究了噪声水平的影响。局部墙剪应力估计精度适中,但其角度估计精度不高。需要进一步研究以提高该方法的测量精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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