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首页> 外文期刊>Journal of Failure Analysis and Prevention >Analysis of Loess Slope Stability Considering Cracking and Shear Failures
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Analysis of Loess Slope Stability Considering Cracking and Shear Failures

机译:考虑开裂和剪切破坏的黄土边坡稳定性分析

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摘要

The cracks caused by tension are commonly observed on the upper border of loess slope. Most researchers assume that shear failure is the main reason for slope instability. The existing cracks and their development are not fully considered. The finite element method is applied widely in the numerical simulations of slope stability, but it converges and time problems must be considered when a crack occurs. The extended finite element method provides a new way to solve discontinuous media problems. In this paper, a composite model of cracking and shear failure is introduced. The extended finite element method was used to simulate the cracking in loess slope. The model used here had a unified enrichment function and the enriched freedom had a clear physical meaning. Numerical analyses were performed and the simulation results showed that the stress field redistributes. The crack propagated almost vertically at the beginning. The slope stability safety factor was less than that obtained without considering tension failure. Furthermore, the critical sliding surface was determined. This model can be used for analyzing the stability of loess slope and provides a reference for slope safety analyses.
机译:在黄土边坡的上部边界通常观察到由张力引起的裂缝。大多数研究人员认为剪切破坏是边坡失稳的主要原因。现有裂缝及其发展尚未得到充分考虑。有限元方法在边坡稳定性的数值模拟中得到了广泛的应用,但是它收敛并且在出现裂缝时必须考虑时间问题。扩展有限元方法提供了一种解决不连续介质问题的新方法。本文介绍了一种裂纹和剪切破坏的复合模型。用扩展有限元法模拟了黄土边坡的开裂。这里使用的模型具有统一的丰富功能,并且丰富的自由具有明确的物理意义。进行了数值分析,仿真结果表明应力场重新分布。裂纹在开始时几乎垂直传播。边坡稳定性安全系数小于未考虑张力破坏的边坡稳定性安全系数。此外,确定了临界滑动表面。该模型可用于分析黄土边坡的稳定性,为边坡安全分析提供参考。

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