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A computational approach for the seismic damage response under multiple earthquakes excitations of adjacent RC structures strengthened by ties

机译:连接加固后相邻钢筋混凝土结构多次地震激励下地震破坏响应的计算方法

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Civil Engineering systems of adjacent reinforced concrete (RC) structures, which have been environmentally degraded, are considered in order to be seismically strengthened by cable-elements (ties). A numerical approach for estimating the effects of pounding (seismic interaction) on the response of such adjacent structures under multiple earthquakes excitation is presented. For the system of the governing partial differential equations (PDE) a double discretization, in space by the Finite Element Method and in time by a direct incremental approach, is used. The unilateral behaviors of both, the cable-elements and the interfaces contact-constraints, are strictly taken into account and result to inequality constitutive conditions. So, in each time-step, a non-convex linear complementarity problem is solved. The decision for the optimal cable-strengthening scheme is obtained on the basis of computed damage indices. 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. (C) 2015 Elsevier Ltd. All rights reserved.
机译:考虑到相邻钢筋混凝土(RC)结构的土木工程系统已经在环境上退化,以便通过电缆元件(扎带)进行抗震加固。提出了一种数值方法,用于估计冲击(地震相互作用)对这些相邻结构在多次地震激励下的响应的影响。对于控制偏微分方程(PDE)的系统,使用有限元方法在空间上使用时间和通过直接增量方法在时间上使用时间进行双重离散化。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,都解决了非凸线性互补问题。根据计算出的损伤指数,可以确定最佳的电缆加固方案。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。 (C)2015 Elsevier Ltd.保留所有权利。

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