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Doppler shift equation and measurement errors affected by spatial variation of the speed of sound in sea water

机译:海水中声速空间变化影响的多普勒移位方程和测量误差

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摘要

Underwater ultrasonic devices using the Doppler effect generally presuppose that the speed of sound is uniform in a propagation medium. Actually, however, the speed of sound in the sea varies with water depth, so that the assumption of such uniform speed has the potential to cause measurement errors. The present study is then involved in theoretically improving the conventional Doppler shift equation by taking into account the fact that the speed of sound is dependent on the propagation path. The study also evaluates measurement errors caused by spatial variation in the speed of sound. Interestingly, the theory predicts that only the speeds of sound at a sound source position and the target position affect the Doppler shift, and the error of the target speed, which is the value that is ultimately measured in ultrasonic Doppler devices, is inversely proportional to the ratio of the speed of sound near the target to that near the source. In order to validate the improved Doppler equation, experiments are conducted using a water tank. The measured Doppler shift data are in agreement with the theoretical predictions within the order of a few tens of hertz.
机译:使用多普勒效应的水下超声装置通常预先假定声音在传播介质中是均匀的。然而,实际上,海中的声速随着水深而变化,因此这种均匀速度的假设具有可能导致测量误差。然后,通过考虑声速取决于传播路径,从理论上提高传统多普勒换档方程中涉及本研究。该研究还评估了由于声速速度的空间变化引起的测量误差。有趣的是,该理论预测,只有声源位置处的声音速度和目标位置影响多普勒班次,并且目标速度的误差是最终在超声波多普勒设备中测量的值成反比在源附近的目标附近声音速度的比率。为了验证改进的多普勒方程,使用水箱进行实验。测量的多普勒换档数据与几十赫兹的阶数内的理论预测一致。

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