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Variations of reflection and transmission coefficients at the boundaries of different media and types of contact between media

机译:不同介质边界处反射和透射系数的变化以及介质之间的接触类型

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Wave amplitudes and amplitude ratios between different wave types carry information about variations of medium properties with depth and time. The most information is contained in the reflection and transmission coefficients, which depend on the physical properties of contacting media and boundary conditions. In this paper, the range of variations in reflection and transmission coefficients of plane waves generated at boundaries with different properties is examined. Numerical simulations of coefficients were carried out for the models of rigid and non-rigid contact between isotropic and anisotropic media. At the rigid contact between isotropic media, amplitudes of generated waves and their ratios vary within relatively narrow limits while the physical parameters of the media may accept various reasonable values. In anisotropic media, coefficients depend not only on the slowness contrast, but also on the wave polarization directions, which may vary considerably in space. Amplitude ratios of generated waves may vary significantly with the incident angle, and the amplitudes of converted waves may dominate or be comparable with monotype waves. Introducing non-rigid contact between media considerably broadens the range of coefficient variations. In contrast to the rigid contact, the incident energy goes predominantly into reflected and converted waves. The amplitude of converted waves may be relatively large and exceed the amplitudes of monotype and incident waves. In general, reflection and transmission coefficients generated at non-rigid contact depend on the values of stiffness coefficients and their ratio.
机译:不同波类型之间的波振幅和振幅比携带有关介质特性随深度和时间变化的信息。最多的信息包含在反射系数和透射系数中,这取决于接触介质的物理特性和边界条件。在本文中,研究了在具有不同特性的边界处产生的平面波的反射和透射系数的变化范围。对各向同性和各向异性介质之间的刚性和非刚性接触模型进行了系数的数值模拟。在各向同性介质之间的刚性接触下,所产生的波的振幅及其比率在相对狭窄的范围内变化,而介质的物理参数可以接受各种合理的值。在各向异性介质中,系数不仅取决于慢度对比度,还取决于波偏振方向,波偏振方向在空间上可能会发生很大变化。产生的波的振幅比可以随入射角而显着变化,并且转换后的波的振幅可以占优势,或者可以与单型波相当。在介质之间引入非刚性接触会大大拓宽系数变化的范围。与刚性接触相反,入射能量主要进入反射波和转换波。转换后的波幅可能会相对较大,并超过单型波和入射波的幅值。通常,在非刚性接触时产生的反射和透射系数取决于刚度系数的值及其比率。

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