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Comparing Kirchhoff-approximation and boundary-element models for computing gadoid target strengths

机译:比较基尔霍夫近似和边界元模型来计算gadoid目标强度

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摘要

To establish the validity of the boundary-element method (BEM) for modeling scattering by swimbladder-bearing fish, the BEM is exercised in several ways. In a computation of backscattering by a 50-mm-diam spherical void in sea water at the four frequencies 38.1, 49.6, 68.4, and 120.4 kHz, agreement with the analytical solution is excellent. In computations of target strength as a function of tilt angle for each of 15 surface-adapted gadoids for which the swimbladders were earlier mapped, BEM results are in close agreement with Kirchhoff-approximation-model results at each of the same four frequencies. When averaged with respect to various tilt angle distributions and combined by regression analysis, the two models yield similar results. Comparisons with corresponding values derived from measured target strength functions of the same 15 gadoid specimens are fair, especially for the tilt angle distribution with the greatest standard deviation, namely 16°.
机译:为了建立边界元素方法(BEM)建模含游泳鱼的散射的有效性,BEM的使用方式多种多样。在海水中直径为50 mm的球形空隙在四个频率38.1、49.6、68.4和120.4 kHz处的反向散射计算中,与分析溶液的一致性非常好。在计算游泳泳衣较早映射到的15个表面适应性角质中的每个目标强度作为倾斜角的函数时,在相同的四个频率下,BEM结果与Kirchhoff逼近模型结果非常吻合。当对各种倾斜角分布取平均值并通过回归分析进行组合时,两个模型得出的结果相似。与从相同的15个gadoid样本的测量目标强度函数得出的对应值进行比较是公平的,尤其是对于最大标准偏差(即16°)的倾斜角分布。

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