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Wave analysis at frictional interface: A case wise study

机译:摩擦界面的波浪分析:一个明智的研究

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摘要

The present article deals with the propagation of a Stoneley wave and with the reflection as well as refraction of an incident P-wave at the frictional bonded interface between an initially stressed isotropic viscoelastic semi-infinite superstratum and an initially stressed isotropic substratum as case I and case II, respectively. The complex form of the velocity equation has been derived in closed form for the propagation of a Stoneley wave in the said structure. The real and imaginary parts of the complex form of the velocity equation correspond to the phase velocity and damped velocity of the Stoneley wave. Phase and damped velocity have been analysed against the angular frequency. The expressions of the amplitude ratios of the reflected and refracted waves are deduced analytically. The variation of the amplitude ratios is examined against the angle of incidence of the P-wave. The influence of frictional boundary parameters, initial stress, viscoelastic parameters on the phase and damped velocities of the Stoneley wave and the amplitude ratios of the reflected as well as refracted P- and SV-wave have been revealed graphically through numerical results.
机译:本文涉及StoneLey波的传播和反射以及在初始强调的各向同性粘弹性半无限超细超细超细超级特拉图内和最初应激的各向同性下皮之间的摩擦粘合界面处的入射P波的折射以及作为I和I的情况案例II分别。速度方程的复杂形式已经以封闭形式导出,用于在所述结构中的stoneley波的传播。速度方程的复杂形式的实数和虚部对应于Stoneley波的相速度和阻尼速度。已经针对角频率分析了相位和阻尼的速度。分析地推断出反射和折射波的幅度比的表达。针对P波的入射角检查幅度比的变化。通过数值结果,通过数值结果揭示了摩擦边界参数,初始应力,粘弹性参数对反射波的相位和阻尼速度的影响和折射的P +和SV波的幅度比的影响。

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