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首页> 外文期刊>The Journal of the Acoustical Society of America >Use of the distorted wave Born approximation to predict scattering by inhomogeneous objects: Application to squid
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Use of the distorted wave Born approximation to predict scattering by inhomogeneous objects: Application to squid

机译:使用畸变波Born逼近来预测不均匀物体的散射:在鱿鱼中的应用

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A new method has been developed to predict acoustic scattering by weakly scattering objects with three-dimensional variability in sound speed and density. This variability can take the form of inhomogeneities within the body of the scatterer and/or geometries where the acoustic wave passes through part of the scattering body, into the surrounding medium, and back into the body. This method applies the distorted wave Born approximation (DWBA) using a numerical approach that rigorously accounts for the phase changes within a scattering volume. Ranges of validity with respect to material properties and numerical considerations are first explored through comparisons with modal-series-based predictions of scattering by fluid-filled spherical and cylindrical fluid shells. The method is then applied to squid and incorporates high resolution spiral computerized tomography (SCT) scans of the complex morphology of the organism. Target strength predictions based on the SCT scans are compared with published backscattering data from live, freely swimming and tethered squid. The new method shows significant improvement for both single-orientation and orientation-averaged scattering predictions over the DWBA-homogeneous-prolate-spheroid model.
机译:已经开发出一种新的方法来预测声散射,该方法是通过在声速和密度上具有三维可变性的弱散射对象来进行声散射。这种可变性可以采取散射体内部和/或几何形状的不均匀性的形式,其中声波穿过散射体的一部分,进入周围的介质,然后回到体中。该方法使用一种数值方法应用扭曲波伯恩近似(DWBA),该方法严格考虑了散射体积内的相位变化。首先通过与基于模态级数的流体填充球形和圆柱形流体壳的散射预测的比较,探索有关材料特性和数值考虑因素的有效范围。然后将该方法应用于鱿鱼,并结合了生物体复杂形态的高分辨率螺旋计算机断层扫描(SCT)扫描。将基于SCT扫描的目标强度预测与已发布的实时,自由游泳和束缚鱿鱼的反向散射数据进行比较。与DWBA均匀扁长球体模型相比,该新方法在单方向和方向平均散射预测上均显示出显着改进。

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