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Settlement of footings at the crest of reinforced slopes subjected to toe unloading

机译:脚趾卸载后加固斜坡顶部的基础沉降

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摘要

To investigate the effectiveness and limitations of using a reinforced earth slab to mitigate excessive footing settlements induced by an unloading at the slope toe, two-dimensional model slope tests were performed. Model slopes sustaining a constant footing load at the slope crest were brought to failure by progressively unloading at the slope toe. A rigid wall was jointed to a screw jack to apply constant displacement rate translational movement of the rigid wall to simulate typical conditions of slope toe excavation. Test results revealed that the toe unloading-induced settlement of a footing can be significantly reduced by using two layers of geosynthetic reinforcement under the footing, provided that the height of toe unloading (H) is less than the threshold value (H-c). For a cohesionless slope subjected to a footing load at the crest, the threshold unloading height can be significantly increased (by 64%) by incorporating two layers of geosynthetic reinforcement under the footing. Test results also revealed that both the stability of a footing and the locus of points of maximum tensile reinforcement force are strongly influenced by the location of the active slip plane developed behind the zone of toe unloading.
机译:为了研究使用加筋土板来减轻坡脚趾卸载引起的过多基础沉降的有效性和局限性,我们进行了二维模型边坡测试。通过在坡脚处逐渐卸荷,使在坡顶处承受恒定基础荷载的模型坡面失效。将刚性墙连接到螺旋千斤顶,以施加恒定位移速率的刚性墙平移运动,以模拟坡脚趾开挖的典型条件。测试结果表明,只要脚趾卸荷高度(H)小于阈值(H-c),在脚底下方使用两层土工合成材料加固,可以显着降低脚趾卸荷引起的基础沉降。对于在山顶处承受基础荷载的无粘性斜坡,可以通过在基础下并入两层土工合成材料来显着提高阈值卸载高度(64%)。测试结果还表明,脚部稳定性和最大拉力增强点的位置都受到脚趾卸载区域后方活动滑动面的位置的强烈影响。

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