周期性复合压电波导中的Umov-Poynting-Mandelstam辐射条件

Asymptot. Anal. Pub Date : 2019-01-07 DOI:10.3233/ASY-181487
G. Leugering, S. Nazarov, J. Taskinen
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引用次数: 0

摘要

我们开发和研究了复合压电弹性波导在无限远处的辐射条件。该方法基于曼德尔施塔姆辐射原理,根据该原理,无穷远处的能量通量是远离源的,这意味着对群速度(符号)的约束。另一方面,Sommerfeld辐射条件对波相速度有限制,实际上不适用于压电弹性波导。我们分析了当压电模量在产生纯弹性内含物的某些区域趋于零时的极限通道。我们提供了一些例子,例如弹性和声学波导以及纯弹性绝缘和导电内含物。
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Umov-Poynting-Mandelstam radiation conditions in periodic composite piezoelectric waveguides
We develop and investigate radiation conditions at infinity for composite piezo-elastic waveguides. The approach is based on the Mandelstam radiation principle according to which the energy flux at infinity is directed away from the source and which implies constraints on the (sign of the) group velocities. On the other side, the Sommerfeld radiation condition implies limitations on the wave phase velocity and is, in fact, not applicable in the context of piezo-elastic wave guides. We analyze the passage to the limit when the piezo-electric moduli tend to zero in certain regions yielding purely elastic inclusions there. We provide a number of examples, e.g. elastic and acoustic waveguides as well as purely elastic insulating and conducting inclusions.
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Stability of a class of nonlinear reaction-diffusion equations and stochastic homogenization On the uniqueness and analyticity in viscoelasticity with double porosity Series expansion for the effective conductivity of a periodic dilute composite with thermal resistance at the two-phase interface Umov-Poynting-Mandelstam radiation conditions in periodic composite piezoelectric waveguides Nonexistence results for systems of parabolic differential inequalities in 2D exterior domains
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