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On modeling cohesive ridge keel punch through tests with a combined finite-discrete element method

机译:组合有限元法对粘性脊龙骨冲孔试验建模

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This paper introduces a technique for modeling partly consolidated ice rubble using a two-dimensional combined finite-discrete element method and an application of the technique on ice rubble punch through experiments. In the technique, each ice block within the rubble, the contact forces between the blocks, the block deformation, and the rubble freeze bonds are modelled. Simulations with various freeze bond strengths and block to block friction coefficients were performed. As a main simulation result, the close relationship between rubble deformation patterns and load records is demonstrated in detail. It is shown that the buoyant load component due to the rubble becoming detached from the surrounding rubble field and displaced during an experiment is of crucial importance when interpreting punch through experiment results. The consequences of simulation results on ice rubble material modeling are discussed.
机译:本文介绍了一种利用二维组合有限元法对部分固结的冰块进行建模的技术,并通过实验将该技术应用于冰块冲头。在该技术中,对碎石中的每个冰块,块之间的接触力,块变形和碎石冻结键进行了建模。进行了具有各种冻结结合强度和逐块摩擦系数的模拟。作为主要的仿真结​​果,详细说明了瓦砾变形模式与荷载记录之间的紧密关系。结果表明,在解释贯穿实验的结果时,由于碎石从周围的碎石场脱离并在实验过程中移位而导致的浮力分量至关重要。讨论了仿真结果对碎冰材料建模的影响。

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