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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Omni-directional rayleigh, Stoneley and Sch?lte waves with general time dependence
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Omni-directional rayleigh, Stoneley and Sch?lte waves with general time dependence

机译:全时瑞利全向瑞利波,斯通利波和席尔夫特波

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Just as uni-directional Rayleigh waves at the traction-free surface of a transversely isotropic elastic half-space and Stoneley waves at the interface between two such media may have arbitrary waveform and may be represented in terms of a single function harmonic in a half-plane, it is shown that surface-guided waves travelling simultaneously in all directions parallel to the surface may be represented, at each instant, in terms of a single function satisfying Laplace's equation in a three-dimensional half-space. That harmonic function is determined so that its normal derivative at the surface equals the normal displacement of the surface (or interface). It is shown, moreover, that the time evolution of that normal displacement may be any solution to the membrane equation with wave speed being equal to that of classical, uni-directional, time-harmonic Rayleigh or Stoneley waves. A similar representation is also shown to exist for Sch?lte waves at a fluid-solid interface, in the non-evanescent case. Thus, every surface- or interfaceguided disturbance in media having rotational symmetry about the surface normal is governed by the membrane equation with appropriate wave speed, provided that the combination of materials allows uni-directional, time-harmonic waves that are nonevanescent. Conversely, each solution to the membrane equation may be used to construct a representation of either a Rayleigh wave, a Stoneley wave or a (non-evanescent) Sch?lte wave. In each case, the disturbance at all depths may be represented at each instant in terms of a single function harmonic in a half-space.
机译:就像横观各向同性弹性半空间的无牵引表面的单向瑞利波和两种此类介质之间的界面处的斯通利波可能具有任意波形一样,它们可以用半个单谐函数表示。在平面上,示出了可以在每个瞬间用在三维半空间中满足拉普拉斯方程的单个函数来表示在平行于表面的所有方向上同时传播的表面导波。确定该谐波函数,以使其在表面的法线导数等于表面(或界面)的法线位移。此外,还表明,该法向位移的时间演化可以是膜方程的任何解,其波速等于经典,单向,时谐瑞利波或斯通利波。在非消逝的情况下,在流体-固体界面处的Schltlte波也存在类似的表示。因此,只要材料的组合允许单向的时间谐和波为非消逝的,则具有关于表面法线旋转对称性的介质中的每个表面或界面引导的扰动都由具有适当波速的膜方程控制。相反,膜方程的每个解都可以用来构造瑞利波,斯通利波或(非van逝)的舒尔夫特波的表示。在每种情况下,可以根据半空间中的单个函数谐波,在每个时刻表示所有深度的干扰。

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