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Analytical study of excitation and measurement of fluid-solid interface waves

机译:流固界面波激发与测量的分析研究

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Analytical analyses are performed to investigate the pressure and particle velocity responses in fluid/solid half spaces subject to impulsive sources. This study has significance for underwater seabed characterization efforts that use interface waves. Results show that pressure ( e. g., measured by hydrophones) in the fluid is more sensitive for interface wave sensing than particle velocity ( e. g., measured by geophones) at the fluid-solid interface. Both types of impulsive point wave sources, explosive action in fluid and mechanical action on solid, are investigated with regard to the excitability of interface waves. Analyses show that a mechanical load applied normal to the interface generates higher amplitude interface waves, relative to the acoustic wave amplitude, than an explosive load in the fluid. The effect of explosive source height is also investigated. Results show that Scholte wave amplitude is affected by the explosive source height, and decays quickly with increasing height. However, explosive source height has little effect on generated leaky Rayeligh wave amplitude.
机译:进行分析分析以研究受脉冲源影响的流体/固体半空间中的压力和粒子速度响应。这项研究对于使用界面波的水下海床表征工作具有重要意义。结果表明,在流体-固体界面处,流体中的压力(例如,由水听器测量)对界面波感测比对粒子速度(例如,由检波器测量)灵敏。关于界面波的激发性,研究了两种类型的脉冲点波源,即流体中的爆炸作用和固体的机械作用。分析表明,与流体中的爆炸性载荷相比,垂直于界面施加的机械载荷相对于声波幅度产生的振幅更高的界面波。还研究了爆炸源高度的影响。结果表明,Scholte波振幅受爆炸源高度的影响,并随着高度的增加而迅速衰减。但是,爆炸源高度对产生的泄漏瑞雷波幅值几乎没有影响。

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