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Limit Equilibrium and Limit Analysis: Comparison of Benchmark Slope Stability Problems

机译:极限平衡与极限分析:基准边坡稳定性问题的比较

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摘要

Conventional stability analyses use various limit equilibrium (LE) methods to determine the minimum, critical factor of safety and its associated failure mechanism. These methods generally assume that collapse will follow predefined geometric constraints that are dependent on certain input criteria-an effective approach for simple geotechnical problems, but challenging in consideration of complex problems. An effective solution lies in the use of upper bound limit analysis (LA) in conjunction with a discretization procedure known as discontinuity layout optimization (DLO). Use of DLO-LA can be an effective tool for establishing a critical failure mechanism and its stability without the constraints or assumptions required in LE analyses. This study compares the use of LE (Spencer method with dynamic programming optimization, Morgenstern-Price, Spencer) and LA for several examples that focus on complex geotechnical scenarios to illustrate agreement and differences between the analyses, as well as situations where use of DLO-LA may be more appropriate. It is shown that LA can provide results that are comparable, and sometimes more critical, than rigorous LE while managing to handle complexities without the same assumptions regarding failure surface geometry or entrance/exit points of the slip surface. With the advance of accessible computer processing, engineers are at the point where more computationally intensive analyses like DLO-LA present a viable alternative to analyses that are dependent on potentially nonintuitive assumptions, especially for complex, yet realistic geotechnical problems.
机译:常规稳定性分析使用各种极限平衡(LE)方法来确定安全的最小关键因素及其相关的故障机理。这些方法通常假定坍塌将遵循预定义的几何约束,该约束取决于某些输入标准,这是一种简单的岩土工程问题的有效方法,但考虑到复杂问题却具有挑战性。一种有效的解决方案在于结合使用上限分析(LA)和称为不连续性布局优化(DLO)的离散化程序。使用DLO-LA可以是建立关键故障机制及其稳定性的有效工具,而无需LE分析中需要的约束或假设。这项研究比较了LE(具有动态编程优化的Spencer方法,Morgenstern-Price,Spencer)和LA的使用,这些示例着重于复杂的岩土场景,以说明分析之间的一致性和差异,以及使用DLO-洛杉矶可能更合适。结果表明,LA可以提供比严格的LE相当的结果,有时甚至更为严格,同时无需复杂的故障表面几何形状或滑动表面的入口/出口点就可以处理复杂的问题。随着可访问计算机处理技术的进步,工程师正处在诸如DLO-LA之类的计算密集型分析提供了一种可行的替代方法的基础上,该分析替代了依赖于潜在的非直觉性假设的分析,尤其是对于复杂而现实的岩土工程问题。

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  • 来源
    《Journal of geotechnical and geoenvironmental engineering》 |2015年第10期|04015043.1-04015043.8|共8页
  • 作者单位

    Dept. of Forest Engineering, Resources and Management, Oregon State Univ., 280 Peavy Hall, Corvallis, OR 97331;

    School of Construction and Civil Engineering, Oregon State Univ., 101 Kearney Hall, Corvallis, OR 97331;

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