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The governing electrodynamic equations of electromagnetic acoustic transducers - art. no. 10E102

机译:电磁声换能器的控制电动力学方程 - 艺术。编号: 10E102

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This paper presents the governing electrodynamic equations of electromagnetic acoustic transducers (EMATs) and extends them to the derivation of the magnetic- and acoustic-field equations in terms of the magnetic vector potential (MVP) and the acoustic wave particle displacement vector (PDV), respectively. It also provides formulations for calculating forces and current densities in the case of two-dimensional (2D) models of EMAT configurations in Cartesian coordinates. Existing methods solve the governing electrodynamic equations for field quantities to analyze EMATs. However, they ignore skin and proximity effects and rely on simple 2D configurations for EMAT coils. Taking into account skin and proximity effects in complex 2D EMAT coil configurations requires the application of the finite element method (FEM). The FEM can be applied to solve the equations stated in terms of the MVP and PDV in the modeling of EMATs. These formulations and expressions facilitate the development and presentation of the FEM for the modeling and analysis of EMATs. (c) 2005 American Institute of Physics.
机译:本文介绍了电磁声换能器(EMATs)的控制电动力学方程,并将其分别扩展到磁矢量势(MVP)和声波粒子位移矢量(PDV)的磁场方程和声场方程的推导。它还提供了在笛卡尔坐标中EMAT构型的二维(2D)模型中计算力和电流密度的公式。现有方法求解场量的控制电动力学方程,以分析EMATs。然而,它们忽略了趋肤和邻近效应,并依赖于EMAT线圈的简单2D配置。在复杂的2D EMAT线圈配置中考虑趋肤效应和邻近效应需要应用有限元法(FEM)。FEM 可用于求解 EMAT 建模中用 MVP 和 PDV 表示的方程。这些公式和表达式有助于开发和演示用于 EMAT 建模和分析的 FEM。(c) 2005年美国物理研究所。

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