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首页> 外文期刊>International journal of geomechanics >On the Soil Slope Failure Mechanism Considering the Mutual Effect of Bedrock and Drawdown
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On the Soil Slope Failure Mechanism Considering the Mutual Effect of Bedrock and Drawdown

机译:考虑基岩和绘制相互影响的土坡式破坏机制

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In reservoirs and embankment areas, frequent water-level fluctuations, especially water drawdowns, often produce instability problems or landslides in the slopes overlying bedrocks. A series of centrifuge model tests were conducted on three slopes overlying bedrocks with different shapes and a slope without the bedrock under drawdown conditions. Full-field displacement of the slopes was obtained for analyses using an image-based system during the tests. The slip surfaces of the slopes overlying bedrocks all emerge at the top of the slopes and then extend to the bottom under drawdown conditions. The slip surface of the slope without the bedrock is the bounding surface for those slopes overlying bedrocks under drawdown conditions. The drawdown-induced deformation area of the slopes is first restricted to a certain range and then gradually expands during drawdown and finally stabilizes. The coupling development of the deformation localization and local failure during drawdown illustrates the progressive failure mechanism of the slope overlying the bedrock. Different shapes of the bedrocks would change the deformation localization characteristics of the slopes and hence significantly change the failure characteristics of the slopes, such as the slip surface, failure process, and safety limit.
机译:在水库和路堤领域,频繁的水位波动,尤其是水拔出,通常在覆盖基岩上的斜坡中产生不稳定问题或山体滑坡。一系列离心模型试验是在三个坡上覆盖在倾斜条件下用不同形状和斜坡的基岩覆盖的斜坡。获得斜率的全场位移,用于使用基于图像的系统在测试期间分析。覆盖基岩的斜坡的滑动表面均在斜坡的顶部出现,然后延伸到下径条件下的底部。没有基岩的斜坡的滑动表面是覆盖在拔线条件下覆盖基岩的斜坡的边界表面。首先限制斜面的缩小诱导的变形面积,然后在缩进期间逐渐膨胀并最终稳定。绘图期间变形定位和局部故障的耦合开发示出了覆盖基岩上的坡度的渐进式故障机理。基岩的不同形状将改变斜坡的变形定位特性,因此显着改变滑板的故障特性,例如滑动表面,故障过程和安全限制。

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