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Use of internal and external variables and extremum principle in limit equilibrium formulations with application to bearing capacity and slope stability problems

机译:在极限平衡公式中使用内部和外部变量以及极值原理,以解决承载力和边坡稳定性问题

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摘要

Limit equilibrium methods, satisfying both force and moment equilibrium can be formulated using assumptions on the internal variables or the external variables. Even though most stability methods are based on force and moment equilibrium, as well as the Mohr-Coulomb yield criterion, there are great differences between the results of the different formulations due to variations in the assumptions. The authors believe that the use of the interslice force function f(x), the thrust line or the base normal forces should provide an equivalent concept at the ultimate/failure state. In the present study, the authors have used the well-known bearing capacity solutions to determine fix), the thrust line and the base normal forces for a "horizontal slope". The equivalence between the different formulations under the ultimate condition is demonstrated. It is shown that it is not important which forces are used in the stability formulation, external boundary forces or internal forces, if only that the ultimate state is considered. It is also demonstrated in the present paper that the maximum extremum from the limit equilibrium analysis is equivalent to the slip line solution using a classical bearing capacity problem.
机译:可以使用内部变量或外部变量的假设来制定同时满足力和力矩平衡的极限平衡方法。即使大多数稳定性方法都基于力和力矩平衡以及Mohr-Coulomb屈服准则,但由于假设的变化,不同公式的结果之间仍存在很大差异。作者认为,使用层间力函数f(x),推力线或基本法向力应在极限/失效状态下提供等效的概念。在本研究中,作者使用了著名的承载力解决方案来确定“水平坡度”的固定,推力线和基本法向力。证明了在最终条件下不同配方之间的等效性。结果表明,仅考虑最终状态,在稳定性公式中使用哪个力,外部边界力或内部力并不重要。本文还证明,极限平衡分析的最大极值等于使用经典承载力问题的滑移线解。

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