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Axisymmetric adaptive lower bound limit analysis for Mohr-Coulomb materials using Semidefinite programming

机译:Mohr-Coulomb材料使用SEMIDIDITE编程的轴对称自适应下限分析

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A lower bound (LB) axisymmetric limit analysis formulation is presented for Mohr-Coulomb materials using finite elements and semidefinite programming (SDP). The details of the application of SDP to the axisymmetric LB finite element method for Mohr-Coulomb materials are described in this paper. Through the use of the SDP, the axisymmetric Mohr-Coulomb yield criterion can be directly applied in its native form in terms of principal stresses without any smoothing of the parent yield surface, and no assumption needs to be made about sigma(theta). A node-stress-based adaptive mesh algorithm is also introduced into the proposed method to obtain an accurate high-accuracy LB solution. The proposed method is then applied to estimate the collapse load of circular footings and the stability of an unlined vertical circular excavation. The results are also compared with those reported in the literature; the results obtained from the proposed method are accurate and can provide failure patterns with greater clarity.
机译:介绍了使用有限元和半纤维编程(SDP)的MoHR-Coulomb材料的下界(LB)轴对称极限分析配方。本文描述了SDP将SDP应用于MoHR-Coulomb材料的有限元方法的细节。通过使用SDP,轴对称MoHR-Coulomb产率标准可以在本地应力方面直接以其天然形式施加,而不会对母体屈服表面进行任何平滑,并且不需要对Sigma(θ)进行任何假设。还将基于节点应力的自适应网格算法引入到所提出的方法中,以获得精确的高精度LB解决方案。然后应用所提出的方法来估计圆形踏板的坍塌载荷以及未衬里垂直圆形挖掘的稳定性。结果也与文献中报道的结果进行了比较;从所提出的方法获得的结果是准确的,并且可以提供更清晰的故障模式。

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