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Mathematical Formulation of the Global Coefficients of Transmission and Reflection of Ultrasonic Waves in Bi-Phase Porous Medium

机译:二相多孔介质中超声波传输和反射的全局系数的数学制定

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The study of signals propagation inside porous media is an important field especially in the biomedical research related to compact bones. The purpose of this paper is to determine a mathematical formulation of the global coefficients of transmission and reflection of nondestructive ultrasonic waves in any bi-phase porous medium. Local coefficients of transmission and reflection on the interface of the porous medium will be determined based on a study of boundary conditions. The behavior of different waves inside the porous medium will be developed so that we can derive a new formulation of global coefficients that takes interior phenomena into consideration. Results are found independently of the geometrical and physical characteristics of the medium. Note that this study is based on normal incident ultrasonic wave propagation.
机译:在多孔介质内的信号传播的研究是一个重要领域,特别是在与紧凑型骨骼相关的生物医学研究中。本文的目的是确定任何双相多孔介质中非破坏性超声波的全局变速系数的数学制定。将基于边界条件的研究确定多孔介质的界面的局部透射和反射的局部系数。将开发多孔介质内部不同波的行为,以便我们能够考虑采用内部现象的全局系数的新配方。结果是独立于培养基的几何和物理特征的发现。请注意,本研究基于正常入射超声波传播。

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