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Dynamic stress state around shallow-buried cavity under transient P wave loads in different conditions

机译:不同条件下瞬态P波载荷作用下浅埋空腔周围的动应力状态

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摘要

The failure of underground structure is always caused by local stress redistribution resulted from transient impact loads. An analytical model is established and solved by using the complex variable function method to illustrate the dynamic stress concentration around a shallow-buried cavity under transient P wave loads. The transient wave response is attained as an integration of steady-state wave response in circular frequency domain. By adopting a Butterworth filter, the jump points in the dynamic stress concentration factor (DSCF) curve which is not in line with the overall trend is filtered out to obtain more reasonable results. The convergence and accuracy of the solutions are verified and discussed in detail. DSCF distributions of high wavenumber incidences differ from that of low wavenumber incidences significantly in amplitudes and distribution patterns. The effects of the cavity depth, incidence angle and position of wave peak on DSCF distributions are illustrated.
机译:地下结构的破坏总是由瞬态冲击载荷引起的局部应力再分布引起的。建立了解析模型,并通过复变函数方法求解了瞬态P波荷载下浅埋空腔周围的动应力集中情况。瞬态波响应是在圆形频域中稳态波响应的积分获得的。通过使用Butterworth滤波器,可以滤除动态应力集中因子(DSCF)曲线中与总体趋势不一致的跳点,以获得更合理的结果。解决方案的收敛性和准确性得到了验证和详细讨论。高波数入射的DSCF分布在幅度和分布模式上与低波数入射的DSCF分布明显不同。阐述了腔深,入射角和波峰位置对DSCF分布的影响。

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