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Investigation on the Electromagnetic Scattering From the Accurate 3-D Breaking Ship Waves Generated by CFD Simulation

机译:CFD模拟产生的精确3-D破船波对电磁散射的研究

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摘要

The study on the scattering mechanism of breaking ship waves provides important theoretical basis to the ship detection and radar imaging in a marine environment. This paper presents a new procedure for evaluating the electromagnetic scattering field of breaking ship waves over a perfect electric conductor sea surface. In this paper, different forms of the near-field ship waves are obtained by the computational fluid dynamics (CFD) method, which provides a new means of analyzing a fully coupled fluid-structure interaction system in a detailed manner. Sufficient grids are used in the CFD numerical simulation to obtain the flow field information of the breaking waves. The accuracy of the breaking wave geometry has been improved obviously, which will lead to a better understanding of the electromagnetic scattering characteristics of breaking ship waves. Considering the multiple scattering between the ship hull and the breaking waves, the scattering field of the sea surface and the ship hull are evaluated by the forward-backward iterated physical optics algorithm. Both scattering characteristics of the breaking ship waves and distribution of the scattering coefficients are obtained. By comparing the bistatic scattering field in different situations, the numerical results show some important effects of the breaking ship waves, which are quite different from the effects of ship models. What is more, the time varying radar cross section of the breaking ship waves are presented based on the dynamic ship waves.
机译:对船舶破波散射机制的研究为海洋环境中船舶的探测和雷达成像提供了重要的理论基础。本文提出了一种新的程序,用于评估在理想的电导体海面上破碎船波的电磁散射场。本文通过计算流体力学(CFD)方法获得了不同形式的近场船波,这为详细分析全耦合的流固耦合系统提供了一种新的手段。在CFD数值模拟中使用足够的网格来获取破碎波的流场信息。破碎波的几何精度已经明显提高,这将使人们对破碎船波的电磁散射特性有了更好的了解。考虑到船体与破碎波之间的多重散射,通过前后迭代的物理光学算法对海面和船体的散射场进行了评估。获得了破船波的散射特性和散射系数的分布。通过比较不同情况下的双基地散射场,数值结果表明了破船波的一些重要影响,与船舶模型的影响有很大不同。此外,基于动态船舶波,给出了破碎船舶波的时变雷达截面。

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