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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >A substructure formulation for the earthquake-induced nonlinear structural pounding problem
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A substructure formulation for the earthquake-induced nonlinear structural pounding problem

机译:地震诱导的非线性结构侵袭问题的子结构配方

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摘要

Earthquake-induced pounding is one of the major reasons for structural failure in earthquake prone cities. An accurate description of the pounding phenomenon of two buildings requires the consideration of systems with a large number of degrees of freedom including adequate contact impact formulations. In this paper, firstly, a node to surface formulation for the realization of state-of-the-art pounding models for structural beam elements is presented. Secondly, a hierarchical substructure technique is introduced, which is adapted to the structural pounding problem. The numerical accuracy and efficiency of the method, especially for the contact forces, are verified on an academic example, applying four different impact elements. Error estimations are carried out and compared with the classical modal truncation method. It is demonstrated that the hierarchical substructure method is indeed able to significantly speed up the numeric integration procedure by preserving a required level of accuracy.
机译:地震诱导的冲击是地震普通城市结构失败的主要原因之一。对两个建筑物的敲击现象的准确描述需要考虑具有大量自由度的系统,包括足够的接触冲击制剂。在本文中,呈现了用于实现用于结构梁元件的最先进的敲击模型的表面配方的节点。其次,引入了分层子结构技术,其适于结构敲击问题。该方法的数值准确性和效率,特别是接触力,在学术典型上验证,应用四种不同的影响元素。执行误差估计,并与经典模态截断方法进行比较。据证明,分层子结构方法确实能够通过保留所需的准确度来显着加速数字集成过程。

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