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Evolution equation for nonlinear Scholte waves

机译:非线性舒尔特波的演化方程

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摘要

The evolution equations for nonlinear Scholte waves (finite amplitude elastic waves propagating along liquid/solid interface), which account for the second order nonlinearity of a liquid, are derived for the first time. For mathematical simplicity the nonlinearity of the solid, which influence is expected to be weak in the case of weak localization of the Scholte wave, is not taken into consideration. The analysis of these equations demonstrates that the nonlinear processes contributing to the evolution of the Scholte wave can be divided into two groups. The first group includes nonlinear processes leading to wave spectrum broadening which are common to bulk pressure waves in liquids and gases. The second group includes the nonlinear processes which are active only in the frequency down-conversion (leading to wave spectrum conservation or narrowing), which are specific to the confined nature of the interface wave. It is demonstrated that the nonlinear parameters, which characterize the efficiency of various nonlinear processes in the interface wave, strongly depend on the relative properties of the contacting liquid and solid (or, in other words, on the deviation of the Scholte wave velocity from the velocities of sound in liquid and in solid). In particular, the sign of the nonlinear parameter responsible for the second harmonic generation can differ from the sign of the nonlinear acoustic parameter of the liquid. It is also verified that there are particular liquid/solid combinations where the nonlinear processes, which are inactive in the frequency up-conversion, dominate in the evolution of the Scholte wave. In this case distortionless propagation of the finite amplitude harmonic interface wave is possible. The proposed theory should find applications in nonlinear acoustics, geophysics, and nondestructive testing.
机译:首次推导了非线性Scholte波(沿液/固界面传播的有限振幅弹性波)的演化方程,该方程解释了液体的二阶非线性。为了简化数学运算,不考虑固体的非线性,在肖尔特波局域性较弱的情况下,这种非线性会受到影响。对这些方程的分析表明,有助于Scholte波演化的非线性过程可以分为两组。第一组包括导致波谱展宽的非线性过程,这对于液体和气体中的体压波是常见的。第二组包括仅在频率下变频中有效的非线性过程(导致波谱守恒或变窄),这些过程特定于界面波的受限性质。结果表明,表征界面波中各种非线性过程效率的非线性参数在很大程度上取决于接触液体和固体的相对特性(换句话说,取决于舒尔特波速度与界面波的偏差)。液体和固体中的声速)。特别地,负责二次谐波产生的非线性参数的符号可以与液体的非线性声学参数的符号不同。还证实了在特定的液体/固体组合中,在频率上转换中无效的非线性过程在舒尔特波的演化中起主要作用。在这种情况下,有限振幅谐波界面波的无失真传播是可能的。提出的理论应在非线性声学,地球物理学和无损检测中找到应用。

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