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Simulation of Structural Collapse with Coupled Finite Element-Discrete Element Method

机译:有限元-离散元耦合方法模拟结构倒塌

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Structural progressive collapse is a great threat to life safety and therefore it is necessary to study its mechanism in detail. Numerical simulation is significant to study the whole process of progressive collapse in structural level. Since collapse is a complicated procedure from continuum into discrete fragments, numerical model should be competent in nonlinear deformation before collapse and breaking and crashing of fragments after collapse. Coupled Finite element-discrete element method on simulating structural progressive collapse is proposed to meet the requirements. Relatively accurate models, such as fiber model and multi-shell shell model, are introduced to construct the finite element model of structure. In the analysis, the failed finite elements will be removed and replaced with granular discrete elements according to the criteria of equivalent total mass and volume so that the impacting and heaping of fragments can be taken into account. The sample with the coupled method shows that this method not only possesses the advantages of finite element method but also simulates the behavior of fragments well.
机译:结构性渐进倒塌是对生命安全的巨大威胁,因此有必要详细研究其机理。数值模拟对于研究结构水平渐进倒塌的全过程具有重要意义。由于坍塌是一个从连续体到离散碎片的复杂过程,因此数值模型应具有塌陷之前的非线性变形以及塌陷之后碎片的破裂和崩溃的能力。提出了一种模拟结构渐进倒塌的有限元-离散元耦合方法。引入了相对精确的模型,如纤维模型和多壳壳模型,以构造结构的有限元模型。在分析中,将根据等效总质量和体积的标准将失效的有限元移除并替换为颗粒状离散元,以便可以考虑碎片的撞击和堆积。耦合方法的样本表明,该方法不仅具有有限元方法的优点,而且可以很好地模拟碎片的行为。

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