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Failure simulation of ice beam using a fully Lagrangian particle method

机译:完全拉格朗日粒子法的冰梁破坏模拟

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A realistic numerical simulation technology using a Lagrangian Fluid-Structure Interaction (FSI) model was combined with a fracture algorithm to predict the fluid-ice-structure interaction. The failure of ice was modeled as the tensile fracture of elastic material by applying a novel FSI model based on the Moving Particle Semi-implicit (MPS) method. To verify the developed fracture algorithm, a series of numerical simulations for 3-point bending tests with an ice beam were performed and compared with the experiments carried out in an ice room. For application of the developed FSI model, a dropping water droplet hitting a cantilever ice beam was simulated with and without the fracture algorithm. The simulation showed that the effects of fracture which can occur in the process of a FSI simulation can be studied.
机译:使用拉格朗日流体-结构相互作用(FSI)模型的现实数值模拟技术与裂缝算法相结合,以预测流体-冰-结构相互作用。通过基于移动粒子半隐式(MPS)方法的新型FSI模型,将冰的破坏建模为弹性材料的拉伸断裂。为了验证开发的断裂算法,对冰梁进行的三点弯曲测试进行了一系列数值模拟,并与在冰室中进行的实验进行了比较。为了应用已开发的FSI模型,模拟了有无断裂算法时滴落的水滴撞击悬臂冰梁的情况。仿真表明,可以研究在FSI仿真过程中可能发生的断裂影响。

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