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Research on polarization of water and bubble scattering echo

机译:水与气泡散射回波的极化研究

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As a ship passed by, a long and wide wake is left and can last for a long time. The optical characteristic of the wake is quite different from the water because of the abundant bubbles in the wake. Bubbles in the wake scatter and absorb light to alter its intensity and polarization state. As an important character of light, the polarization of scattering light of bubbles and water can be used to detect bubbles in the wake and can provide important information to the design of lidar detecting system. In this paper the theoretical and experimental study of polarization characteristic of water and bubble scattering echo are presented. The polarization of scattering light of bubbles and water were calculated by Stokes vector and Muller matrix. The echoes of water and wake bubbles simulated by ceramic tube were measured in laboratory by adjusting the angle of analyzer. The measurement results are given in the paper including the echoes of water and bubbles at different distances. The results show that by adjusting the angle of analyzer, the strong backscattering of water is compressed greatly but that of bubbles decreases a little. Take advantage of this characteristic the measurement range of detecting device can be broadened to some extent.
机译:当船只经过时,会留下很长很宽的尾流,并且可以持续很长时间。由于尾流中大量气泡,尾流的光学特性与水完全不同。尾流中的气泡会散射并吸收光,从而改变其强度和偏振态。作为光的重要特征,气泡和水的散射光的偏振可用于检测尾流中的气泡,并可为激光雷达检测系统的设计提供重要信息。本文对水和气泡散射回波的偏振特性进行了理论和实验研究。利用斯托克斯向量和穆勒​​矩阵计算了气泡和水的散射光的偏振态。通过调节分析仪的角度,在实验室中测量了陶瓷管模拟的水和气泡的回声。论文中给出了测量结果,其中包括不同距离的水和气泡的回声。结果表明,通过调整分析仪的角度,水的强烈反向散射被大大压缩,而气泡的反向散射则有所减少。利用此特性,可以将检测设备的测量范围扩大到一定程度。

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