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Lower-Bound Finite Elements Limit Analysis for Hoek-Brown Materials Using Semidefinite Programming

机译:使用SEMIDEFINITE规划Hoek-棕色材料的较低的有限元限制分析

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摘要

The lower-bound finite elements limit analysis in combination with semidefinite programming (SDP) has been used to solve stability problems involving a modified Hoek-Brown (HB) yield criterion with the exponent alpha = 0.5. In order to demonstrate the applicability of the proposed computational approach, bearing capacities of strip and circular foundations on rock mass have been determined. The results have been given in the form of nondimensional bearing capacity factors as a function of different material input parameters. By comparing the results obtained from the present analysis with that reported in literature, it is noted that the proposed approach remains quite accurate and is highly efficient to deal with any large-scale optimization problem. The method does not require any kind of the smoothing of the yield surface and it can even be implemented to deal with any three-dimensional problem as well. (C) 2017 American Society of Civil Engineers.
机译:较低限制的有限元限制分析与SEMIDEFINITE编程(SDP)组合用于解决涉及修饰的HOEK-BROWN(HB)屈服标准的稳定性问题与指数α= 0.5。 为了证明所提出的计算方法的适用性,已经确定了岩体上的带状和圆形基础的承载能力。 结果以非潜能的承载力因子的形式给出,作为不同材料输入参数的函数。 通过比较从文献中报告的目前分析中获得的结果,注意到所提出的方法仍然非常准确,并且可以对任何大规模优化问题进行高效。 该方法不需要任何类型的屈服表面平滑,并且甚至可以实现以处理任何三维问题。 (c)2017美国土木工程师协会。

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