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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Slip Line Theory Based Stability Analysis on the Influence of Deep Excavation on Adjacent Slope
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Slip Line Theory Based Stability Analysis on the Influence of Deep Excavation on Adjacent Slope

机译:基于防滑线理论基于稳定性分析对邻近坡度的深度挖掘影响

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The impact of deep excavation to the stability of adjacent slope is evaluated based on the slip line theory. Stress field of slope under various excavation conditions is simulated by finite element method, while slip line field is determined by non-associated flow rule. Factor of safety is obtained by integrating the skid-resistance and the shear stress on each slip line, and the slip line with minimum factor of safety corresponds to the critical slip surface. Two typical displacement constraint boundaries are considered. The results indicate that the critical slip surface moves towards to the slope surface and develops downwards. The factor of safety decreases with the excavation process. For flexible displacement constraint boundary, large deformation of supporting pile causes obvious variation of critical slip surface and factor of safety. In terms of the stiff displacement constraint boundary with internal supports, deep excavation only has limited effect on the slope stability.
机译:基于滑动线理论,评估了深度挖掘对相邻斜率稳定性的影响。 通过有限元方法模拟各种挖掘条件下的斜率的应力场,而滑线场由非相关性的流量确定。 通过将平滑线上的平滑和剪切应力集成在每个滑管上的剪切应力,并且具有最小安全系数的滑线对应于临界滑动表面来获得安全系数。 考虑了两个典型的位移约束边界。 结果表明,临界滑动表面向倾斜表面移动并向下发展。 随着挖掘过程的安全因素减少。 对于柔性位移约束边界,支撑桩的大变形导致临界滑动表面的明显变化和安全系数。 就具有内部支架的僵硬排量约束边界而言,深挖仅对斜坡稳定性影响有限。

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