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Efficient solution of the multiple seismic pounding problem using hierarchical substructure techniques

机译:使用层次结构技术有效地解决多种地震冲击问题的解决方案

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Structural pounding is one of the major reasons for severe structural damage or even collapse. Thus, detailed simulations, including dynamic contact formulations, are often required in order to obtain reliable response information of structures. This leads inevitably to computationally expensive analysis. Therefore, in this paper, an effective hierarchical substructure method, adapted to structural pounding problems, is introduced. Based on that, a hybrid substructure method is presented. Both strategies are presented on an academic multiple pounding example, applying both a sinusoidal and a real earthquake excitation. It is shown that both strategies enable accurate low-order representations of the complex full dynamic contact problem. Thereafter, the new approaches are compared with the classical modal truncation strategy and an improved controlled modal truncation strategy. It is shown that an extensive improvement of the approximation of the full response can be achieved applying the new hierarchical substructure and the new hybrid substructure approach.
机译:结构侵犯是严重结构损伤甚至崩溃的主要原因之一。因此,通常需要详细的模拟,包括动态接触制剂,以获得结构的可靠响应信息。这不可避免地导致计算昂贵的分析。因此,在本文中,介绍了适于结构敲击问题的有效分层子结构方法。基于此,提出了一种混合子结构方法。这两项策略都是在学术多重冲击示例中,应用了一个正弦和真正的地震激发。结果表明,两种策略都可以准确地实现复杂的全动态接触问题的低阶表示。此后,将新方法与经典模态截断策略和改进的受控模态截断策略进行比较。结果表明,可以实现全新的分层子结构和新的混合次结构方法来广泛改善完整响应的近似。

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