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An implicit BEM formulation to model strong discontinuities in solids

机译:隐式BEM公式可对实体中的强不连续性进行建模

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A boundary element method (BEM) formulation to predict the behavior of solids exhibiting displacement (strong) discontinuity is presented. In this formulation, the effects of the displacement jump of a discontinuity interface embedded in an internal cell are reproduced by an equivalent strain field over the cell. To compute the stresses, this equivalent strain field is assumed as the inelastic part of the total strain. As a consequence, the non-linear BEM integral equations that result from the proposed approach are similar to those of the implicit BEM based on initial strains. Since discontinuity interfaces can be introduced inside the cell independently on the cell boundaries, the proposed BEM formulation, combined with a tracking scheme to trace the discontinuity path during the analysis, allows for arbitrary discontinuity propagation using a fixed mesh. A simple technique to track the crack path is outlined. This technique is based on the construction of a polygonal line formed by segments inside the cells, in which the assumed failure criterion is reached. Two experimental concrete fracture tests were analyzed to assess the performance of the proposed formulation.
机译:提出了一种边界元方法(BEM)公式来预测表现出位移(强)不连续性的固体的行为。在该公式中,嵌入在内部单元中的不连续界面的位移跳跃的影响通过单元上的等效应变场来再现。为了计算应力,将此等效应变场假定为总应变的非弹性部分。结果,所提出的方法产生的非线性BEM积分方程与基于初始应变的隐式BEM方程相似。由于可以在单元边界上独立地将不连续性界面引入到单元内部,因此建议的BEM公式与跟踪方案相结合,可以在分析过程中跟踪不连续性路径,从而允许使用固定网格进行任意不连续性传播。概述了一种跟踪裂纹路径的简单技术。该技术基于由单元内部的分段形成的折线的构造,在该折线中达到了假定的失效标准。分析了两个试验性混凝土断裂试验,以评估建议配方的性能。

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