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An Efficient Multiregion FEM-BIM for Composite Scattering From an Arbitrary Dielectric Target Above Dielectric Rough Sea Surfaces

机译:介电波涛汹涌的海面以上任意介质靶的复合散射的高效多区域有限元-BIM

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An efficient multiregion hybrid method of the finite element method (FEM) combined with the boundary integral method (FEM-BIM) is first proposed for the fast simulation of 2-D scattering from an arbitrary dielectric target above a “Pierson– Moskowitz” rough sea surface. In the implementation of the multiregion hybrid method, the entire model is divided into multiple computational regions depending on energy distribution of an incident wave. With mutual coupling between the target and the dominant region of the sea considered, FEM and BIM are respectively applied to study the target and the dominant region to exactly obtain electromagnetic fields and currents, which have powerful illuminated field and strong interaction with each other. Mutual coupling between different subordinate regions is approximately considered by field integral equations based on Kirchhoff approximation by which the approximate currents in subordinate regions can be obtained. Because FEM and BIM are only performed on the target and the dominant region of the sea, the number of unknowns and the time required in the new method are dramatically reduced than those in the traditional FEM-BIM, making the hybrid method more efficient in the simulation of the composite problem.
机译:首先提出了一种有效的多区域有限元方法(FEM)与边界积分方法(FEM-BIM)相结合的混合方法,用于快速模拟“皮尔森-莫斯科维茨”波涛汹涌的任意介质目标的二维散射表面。在多区域混合方法的实现中,根据入射波的能量分布将整个模型划分为多个计算区域。考虑到目标和海洋优势区域之间的相互耦合,分别应用有限元法和BIM研究目标和优势区域,以精确获得电磁场和电流,这些电磁场和电流具有强大的照明场,并且相互作用强。通过基于基尔霍夫(Kirchhoff)近似的场积分方程,可以近似地考虑不同下属区域之间的相互耦合,由此可以获得下属区域中的近似电流。由于FEM和BIM仅在目标和主要海域执行,因此与传统FEM-BIM相比,新方法的未知数和所需时间大大减少,从而使混合方法在航海中更有效。复合问题的模拟。

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