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Limit-Equilibrium Analysis on Stability of a Reinforced Slope with a Grid Beam Anchored by Cables

机译:锚固网格梁的加筋边坡稳定性的极限平衡分析

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In the stability analyses of a reinforced slope with a grid beam anchored by cables, the anchoring force of the cable is usually simplified as the concentrated force acting on the slip surface to calculate the reinforcement effect. The anchoring force actually acts on the slope surface as stress because of the effect of the grid beam. Therefore, this work proposes two new calculation modes of anchoring force: stresses with rectangular and curved distribution acting on the slope surface. In addition, the analysis considered the presence of a cavity, which results in a void underneath the grid beam near the slope surface. Then, two types of slip surfaces and the Morgenstern-Price method were adopted to study slope stability. Thus, the following conclusions were obtained: (1) three calculation modes have nearly similar solutions with less than 5% difference; (2) the arbitrary curved slip surface is suggested to be used as the critical slip surface that shows a noncircular shape; and (3) the void causes anchorage cable failure, which reduces slope stability significantly. (C) 2017 American Society of Civil Engineers.
机译:在用锚索锚固网格梁的加固边坡的稳定性分析中,通常将锚索的锚固力简化为集中力作用在滑移面上以计算加固效果。由于网格梁的作用,锚固力实际上作为应力作用在斜坡表面上。因此,这项工作提出了两种新的锚固力计算模式:作用在斜坡表面的具有矩形和弯曲分布的应力。此外,分析还考虑了空腔的存在,该空腔会在靠近斜面的栅格梁下方形成空隙。然后,采用两种类型的滑动面和Morgenstern-Price方法研究边坡的稳定性。因此,得出以下结论:(1)三种计算模式具有几乎相似的解,且相差小于5%。 (2)建议使用任意弯曲的滑动面作为显示非圆形的临界滑动面; (3)空隙会导致锚索失效,从而大大降低边坡稳定性。 (C)2017年美国土木工程师学会。

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