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Modeling of Axisymmetrical Transducer Configurations Based on Pseudospectral / Finite-difference Time-domain Method

机译:基于假谱/有限差分时域法的轴对称传感器配置建模

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The transient analysis of piezoelectric resonators with complex shape is often performed using finite-element (FE) methods whose numerical dispersion prevents the modeling of waves propagating over large distances. Although this difficulty can be countered by the successive use of several models (one to model structure vibrations, an other to simulate acoustic propagation), the purpose of this work is to develop a single numerical algorithm which enables to accurately simulate both the generation of acoustic waves in a piezoelectric transducer and their propagation in the surrounding media. The pseudospectral time-domain (PSTD) algorithm is used to simulate the propagation of acoustic waves, as stability and high accuracy can be achieved from as few as two nodes per wavelength. But the electric field can not be calculated with this method. That is why piezoelectricity is implemented using a finite-difference (FD) representation, resulting in an hybrid FD-PSTD model which retains the advantages of both methods. The axisymmetrical computation of the algorithm is exposed and the results obtained for the simulation of HF transducers are found to be in agreement with those of the FE algorithm of ATILA software.
机译:使用具有复杂形状的压电谐振器的瞬态分析通常使用有限元(Fe)方法进行,其数值分散可以防止在大距离上传播的波的建模。虽然这种困难可以通过连续使用多种型号(一个来模拟结构振动,另一个模拟声学传播),但是这项工作的目的是开发一种单一数值算法,该算法能够精确模拟声学的产生。在压电换能器中波浪及其在周围介质中的传播。伪谱时域(PSTD)算法用于模拟声波的传播,因为稳定性和高精度可以从少数为每个波长的两个节点来实现。但是电场无法用这种方法计算。这就是为什么使用有限差分(FD)表示来实现压电性,导致混合FD-PSTD模型,其保留了两种方法的优点。曝光算法的轴对称计算,并发现用于模拟HF换能器的结果与ATALA软件的FE算法的算法一致。

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