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首页> 外文期刊>Journal Of Theoretical And Applied Mechanics >Pounding Effects on the Earthquake Response of Adjacent Reinforced Concrete Structures Strengthened by Cable Elements
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Pounding Effects on the Earthquake Response of Adjacent Reinforced Concrete Structures Strengthened by Cable Elements

机译:索单元对相邻钢筋混凝土结构地震响应的撞击影响

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摘要

A numerical approach for estimating the effects of pounding (seismic interaction) on the response of adjacent Civil Engineering structures is presented. Emphasis is given to reinforced concrete (RC) frames of existing buildings which are seismically strengthened by cable-elements. A double discretization, in space by the Finite Element Method and in time by a direct incremental approach is used. The unilateral behaviours of both, the cable-elements and the interfaces contact-constraints, are taken strictly into account and result to inequality constitutive conditions. So, in each time-step, a non-convex linear complementarity problem is solved. It is found that pounding and cable strengthening have significant effects on the earthquake response and, hence, on the seismic upgrading of existing adjacent RC structures.
机译:提出了一种估计冲击(地震相互作用)对邻近土木工程结构响应影响的数值方法。重点是现有建筑物的钢筋混凝土(RC)框架,这些框架通过电缆元件进行抗震加固。使用了通过空间有限元法和通过时间直接增量法的双重离散化。严格考虑电缆元素和接口接触约束的单方面行为,并导致不平等的本构条件。因此,在每个时间步中,解决了非凸线性互补问题。结果发现,敲击和电缆加固对地震反应具有重要影响,因此,对现有相邻RC结构的地震升级也有显着影响。

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