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Progressive Failure Behavior and Mechanism of Soil Slopes under Dynamic Loading Conditions

机译:动态荷载条件下土质边坡的渐进破坏行为及机理

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Dynamic loading is a major cause of landslides with significantly different behavior from static loading. A series of centrifuge model tests was conducted to investigate the progressive failure behavior of slopes under dynamic loading conditions, with a focus on the effect of cyclic loading. The cyclic effect induced significant deformation and final failure of the slope, which was influenced by the cyclic loading patterns. The slip surface developed from the top of the slope downward to the lower part with the application of vertical loading. The failure process of the slope exhibited a significant coupling with the deformation localization under dynamic loading conditions. The deformation localization developed in the slope during loading and resulted in the formation of the slip surface. Alternately, the local failure caused stronger deformation localization near the slip surface. The deformation was mainly concentrated in a limited zone. In the zone, a reversed triangular zone under the loading plate exhibited negligible deformation localization. The cyclic loading pattern had a significant effect on the slip surface and limit-bearing capacity of the slope, which was essentially dependent on the diversity of the deformation behavior of the slopes under different cyclic loading conditions. (C) 2016 American Society of Civil Engineers.
机译:动态荷载是导致滑坡行为与静态荷载有明显不同的主要原因。进行了一系列离心模型试验,以研究边坡在动态载荷条件下的渐进破坏行为,重点是循环载荷的影响。循环效应引起边坡的明显变形和最终破坏,这受循环荷载模式的影响。在施加垂直载荷的情况下,滑动面从斜坡的顶部向下发展到下部。在动态载荷条件下,边坡的破坏过程与变形局部性显着相关。在加载过程中,变形局部化出现在斜坡上,并导致了滑移面的形成。或者,局部破坏在滑移面附近引起更强的变形局部化。变形主要集中在有限的区域。在该区域中,加载板下方的倒三角形区域显示出可忽略的变形局部。循环荷载模式对边坡的滑动面和极限承载力有显着影响,这主要取决于边坡在不同循环荷载条件下变形行为的多样性。 (C)2016年美国土木工程师学会。

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