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Measurements of ultrasound velocity and attenuation in numerical anisotropic porous media compared to Biot’s and multiple scattering models

机译:与Biot模型和多重散射模型相比,数值各向异性多孔介质中超声速度和衰减的测量

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摘要

This article quantitatively investigates ultrasound propagation in numerical anisotropic porous media with finite-difference simulations in 3D. The propagation media consist of clusters of ellipsoidal scatterers randomly distributed in water, mimicking the anisotropic structure of cancellous bone. Velocities and attenuation coefficients of the ensemble-averaged transmitted wave (also known as the coherent wave) are measured in various configurations. As in real cancellous bone, one or two longitudinal modes emerge, depending on the micro-structure. The results are confronted with two standard theoretical approaches: Biot’s theory, usually invoked in porous media, and the Independent Scattering Approximation(ISA), a classical first-order approach of multiple scattering theory. On the one hand, when only one longitudinal wave is observed, it is found that at porosities higher than 90% the ISA successfully predicts the attenuation coefficient (unlike Biot’s theory), as well as the existence of negative dispersion. On the other hand, the ISA is not well suited to study two-wave propagation, unlike Biot’s model, at least as far as wave speeds are concerned. No free fitting parameters were used for the application of Biot’s theory. Finally we investigate the phase-shift between waves in the fluid and the solid structure, and compare them to Biot’s predictions of in-phase and out-of-phase motions.
机译:本文利用3D有限差分模拟对超声在数值各向异性多孔介质中的传播进行了定量研究。传播介质由散布在水中的椭圆形散射体簇组成,模仿了松质骨的各向异性结构。以各种配置测量集合平均透射波(也称为相干波)的速度和衰减系数。就像在真正的松质骨中一样,根据微观结构,会出现一种或两种纵向模式。结果面临两种标准的理论方法:通常在多孔介质中调用的比奥理论,以及经典的多重散射理论的一阶方法独立散射近似(ISA)。一方面,当只观察到一个纵波时,发现孔隙率高于90%时,ISA成功地预测了衰减系数(与Biot的理论不同),并且存在负色散。另一方面,与Biot模型不同,ISA并不适合研究两波传播,至少就波速而言。没有免费的拟合参数用于Biot理论的应用。最后,我们研究了流体和固体结构中的波之间的相移,并将它们与Biot对同相和异相运动的预测进行了比较。

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