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In-plane Laser-Doppler-Velocimeter sensor head for the measurement of surface structural intensity

机译:平面激光多普勒测速仪传感器头,用于测量表面结构强度

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摘要

The existing theory regarding the acoustic Poynting vector in the free surface of a structure, which up to now has only been established for the case of isotropic structures, is generalized to non-isotropic structures. It is shown that, in this general case, the measurement of the acoustic Poynting vector in the surface can be reduced to a measurement of the three in-plane strain and the two in-plane velocity components. Based on this formulation, a sensor head concept for the determination of the acoustic Poynting vector, using multi-point optical in-plane displacement measurement is presented. The concept is studied experimentally for a simple case of one-dimensional structural vibration. Experimental results obtained with a sensor head designed for one-dimensional acoustic energy flow are presented, demonstrating the feasibility of the technique. [References: 22]
机译:迄今为止,仅针对各向同性结构建立的关于结构自由表面中的声学Poynting矢量的现有理论被推广为非各向同性结构。可以看出,在这种一般情况下,可以将表面中的声波因廷矢量的测量减小为三个平面内应变和两个平面内速度分量的测量。基于此公式,提出了使用多点光学面内位移测量来确定声学坡印廷矢量的传感器头概念。对一维结构振动的简单情况进行了实验研究。提出了针对一维声能流设计的传感器头获得的实验结果,证明了该技术的可行性。 [参考:22]

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