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Modeling linear Rayleigh wave sound fields generated by angle beam wedge transducers

机译:面向角梁楔形换能器产生的模拟线性冰色波声场

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In this study, the reciprocity theorem for elastodynamics is transformed into integral representations, and the fundamental solutions of wave motion equations are obtained using Green’s function method that yields the integral expressions of sound beams of both bulk and Rayleigh waves. In addition to this, a novel surface integral expression for propagating Rayleigh waves generated by angle beam wedge transducers along the surface is developed. Simulation results show that the magnitudes of Rayleigh wave displacements predicted by this model are not dependent on the frequencies and sizes of transducers. Moreover, they are more numerically stable than those obtained by the 3-D Rayleigh wave model. This model is also applicable to calculation of Rayleigh wave beams under the wedge when sound sources are assumed to radiate waves in the forward direction. Because the proposed model takes into account the actual calculated sound sources under the wedge, it can be applied to Rayleigh wave transducers with different wedge geometries. This work provides an effective and general tool to calculate linear Rayleigh sound fields generated by angle beam wedge transducers.
机译:在本研究中,弹性动力学的互易性定理被转化为整体表示,并且使用绿色的功能方法获得波运动方程的基本解,其产生散装和瑞利波的声束的积分表达式。除此之外,开发了一种用于传播由角梁楔形换能器沿着表面产生的瑞利波的新表面积分表达式。仿真结果表明,该模型预测的瑞利波位移的大小不依赖于换能器的频率和尺寸。此外,它们比3-D瑞利波模型获得的更稳定。该模型也适用于当假定声源以向前方向辐射波时的楔形台下的瑞利波梁的计算。由于所提出的模型考虑了楔形下的实际计算的声源,所以它可以应用于具有不同楔形几何形状的瑞利波传感器。这项工作提供了一种有效和一般的工具来计算由角梁楔形换能器产生的线性瑞利声场。

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