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Assessing the Stability of Rock Slopes with Respect to Block-Flexure Toppling Failure Using a Force-Transfer Model and Genetic Algorithm

机译:利用力传递模型和遗传算法评估岩石斜面稳定性岩石斜面的稳定性

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摘要

Block-flexure toppling is the commonest type of failure in anti-dip bedding rock slopes. In this work, a new model called the force-transfer model (FTM) for this kind of failure is proposed, which is based on cantilever beams and limit equilibrium theory. A genetic algorithm (GA) was further employed to predict the safety factor and failure surface of the rock slope. A centrifuge test was also conducted to check the feasibility of using the combined FTM-GA method to model block-flexure toppling failure. The centrifugal results showed that a complex failure surface was produced in a slope undergoing block-flexure toppling. The failure surface is stepped and has a step height approximately equal to the spacing of the cross joints. Comparing these results with the theoretical ones shows that it is eminently feasible to use the FTM-GA method to analyze the stability of slopes liable to undergo block-flexure toppling failure. Moreover, the safety factor (i.e., failure load in the centrifugal test) and failure surface of the slope can be accurately determined using the new method. The newly proposed method can, therefore, be used as a theoretical tool for evaluating and designing anti-dip bedding rock slopes.
机译:块弯曲倒装是防浸床上用品岩石斜坡中最常用的失效。在这项工作中,提出了一种称为这种故障​​的力转移模型(FTM)的新模型,这是基于悬臂梁和极限平衡理论。进一步采用遗传算法(GA)来预测岩石坡的安全因子和失效表面。还进行了离心机测试以检查使用组合的FTM-GA方法来模拟块弯曲膨胀故障的可行性。离心结果表明,在经历块弯曲浇注的斜率下产生复杂的失效表面。失败表面是阶梯式的,并且具有大致等于交叉接头的间隔的台阶高度。将这些结果与理论上的结果表明,使用FTM-GA方法可以分析易于进行块弯曲膨胀失败的斜坡稳定性是可行的。此外,可以使用新方法精确地确定安全系数(即离心试验中的故障负载)和斜率的故障表面。因此,新的方法可以用作评估和设计防浸床上用品岩石斜坡的理论工具。

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