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Coupled Discrete Element/Finite Element Method for the Analysis of Large Reinforced Concrete Structures Submitted to an Impact

机译:耦合离散元件/有限元方法,用于分析大型钢筋混凝土结构,提交影响

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The efficiency of the discrete element method for studying the fracture of heterogeneous media has been demonstrated, but it is limited by the size of the computational model. A coupling between the discrete elements (DEM) and the finite elements (FEM) methods is proposed to handle the simulation of impacts on large structures. The structure is split into two subdomains in each of which the method is adapted to the behavior of the structure under impact. The DEM takes naturally into account the discontinuities and is used to model the media in the impact zone. The remaining structure is modeled by the FEM. We propose an adaptation of the coupling procedure to connect Discrete Element model to shell-type Finite Elements. Finally, the efficiency of this approach is shown on the simulation of a reinforced concrete slab impacted by a tubular impactor.
机译:已经证明了用于研究异构介质骨折的离散元件方法的效率,但是由计算模型的大小限制。提出了离散元件(DEM)和有限元(FEM)方法之间的耦合来处理对大结构的影响的模拟。该结构被分成两个子域中,每个子域在该子域中,该方法适于在冲击下的结构的行为。 DEM自然地考虑到不连续性,用于将媒体建模在冲击区中。剩余结构由FEM建模。我们提出了一种适应耦合过程,将离散元件模型连接到外壳型有限元。最后,在由管状撞击器撞击的钢筋混凝土板的模拟上显示了这种方法的效率。

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