Internal friction in the Earth' crust and transverse seismic waves

IF 0.9 Q4 GEOSCIENCES, MULTIDISCIPLINARY AIMS Geosciences Pub Date : 2022-01-01 DOI:10.3934/geosci.2022006
B. I. Birger
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Abstract

A transverse harmonic seismic wave, which propagates through the upper fractured layer of the Earth towards the Earth's surface, is considered. It is shown that the attenuation of a seismic wave in the Earth's upper crust is due to internal friction, i.e., friction between the sides of micro-fractures. Such a damping mechanism does not work in the deeper layers of the Earth where high lithostatic pressure prevents the movement along fractures. The governing equation for a brittle fractured medium is nonlinear. In the study of wave propagation, an approximate method of harmonic linearization is used. It is shown that internal friction in the upper crust leads to the transformation of a transverse harmonic wave into a shock wave.
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地壳的内摩擦和横向地震波
考虑了通过地球上部断裂层向地球表面传播的横向谐波地震波。结果表明,地震波在地球上地壳中的衰减是由于内摩擦,即微裂缝两侧之间的摩擦。这样的阻尼机制在地球的深层不起作用,因为那里的高静岩压力阻止了沿裂缝的运动。脆性断裂介质的控制方程是非线性的。在波的传播研究中,采用了近似的谐波线性化方法。结果表明,上地壳的内摩擦使横谐波转化为激波。
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来源期刊
AIMS Geosciences
AIMS Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
自引率
7.70%
发文量
31
审稿时长
8 weeks
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