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3d Discrete Numerical Modelling Of Ridge Keel Punch Through Tests

机译:通过测试对脊龙骨冲头进行3d离散数值建模

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摘要

Ridge keel punch through tests were simulated in 3D. In simulations unconsolidated ridge keel was modelled as a rubble pile of loose ice blocks. Combined finite-discrete element method (FEM-DEM) with rigid discrete elements representing ice blocks was used. Simulations were run in full scale. In total 47 simulations were run with various friction coefficients and keel depths. The failure process of simulated rubble piles was analysed and the shear strength of the rubble pile was derived from results. The effect of rubble porosity, keel depth and friction on shear strength of the pile was also analysed. The simulation results were compared to laboratory and full-scale punch through tests of unconsolidated ice rubble. Shear strength values achieved from simulations were in range for experimental results. Failure process was observed to be similar to laboratory experiments.
机译:脊龙骨穿孔测试以3D模拟。在模拟中,未固结的龙骨被建模为一块松散的冰块瓦砾。结合了有限离散元法(FEM-DEM)和代表冰块的刚性离散元。模拟已全面运行。在不同的摩擦系数和龙骨深度下总共进行了47次仿真。分析了模拟碎石桩的破坏过程,并从结果推导出了碎石桩的抗剪强度。还分析了瓦砾孔隙率,龙骨深度和摩擦力对桩的抗剪强度的影响。将模拟结果与未固结的冰瓦砾的实验室和全面穿孔测试进行了比较。从模拟获得的抗剪强度值在实验结果的范围内。观察到失效过程与实验室实验相似。

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