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首页> 外文期刊>International journal of geomechanics >Effects of Anisotropy, Initial Stress, Heterogeneity, and Gravity on Torsional Wave Propagation
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Effects of Anisotropy, Initial Stress, Heterogeneity, and Gravity on Torsional Wave Propagation

机译:各向异性,初始应力,异质性和重力对扭转波传播的影响

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摘要

The present paper provides the results of a study of the propagation of torsional surface waves in an initially stressed self-reinforced layer lying over a dry sandy Gibson half-space in the presence of initial stress and gravity. The closed-form dispersion relation was obtained analytically. The influences of initial stress, reinforcement, inhomogeneity, gravity, and sandy parameter on the torsional wave were investigated by plotting the dispersion curves. It was observed that the rigidities, initial stress, and sandy parameter of the half-space have a favoring effect on the phase velocity, whereas gravity has the reverse effect on the velocity of the torsional surface wave. It also was noted that as reinforcement increased in the medium, the phase velocity also increased significantly.
机译:本文提供了在存在初始应力和重力的情况下,在干燥的沙质吉布森半空间上的初始应力自增强层中扭转表面波传播的研究结果。通过解析获得闭合形式的分散关系。通过绘制频散曲线,研究了初始应力,钢筋,不均匀性,重力和沙质参数对扭转波的影响。可以看出,半空间的刚度,初始应力和沙质参数对相速度具有有利的影响,而重力对扭转面波的速度具有相反的影响。还应注意,随着介质中增强的增加,相速度也显着增加。

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