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Numerical modelling strategy for predicting the response of reinforced concrete walls using Timoshenko theory

机译:蒂姆森科理论预测钢筋混凝土墙响应的数值建模策略

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摘要

In recent decades, different macro-models have been proposed for simulating the behaviour of concrete shear walls because of their significant role in the seismic performance of urban buildings. The ability of Timoshenko's beam theory to evaluate the behaviour of slender and moderate-aspect-ratio concrete shear walls was evaluated in this work. For this purpose, a non-linear displacement-based Timoshenko fibre element was first added to OpenSees software. A new constitutive model based on modified compression field theory was used for the stress-strain relationship of the materials. To validate the element and the materials used, the results of the numerical model were compared with a set of laboratory tests of concrete shear walls subjected to cyclic and seismic loads (shaking table tests). Evaluation of the numerical model and the experimental results revealed that the analysis procedure used to model the reinforced concrete walls predicted their overall and local responses with acceptable accuracy. It can thus be used as a reliable tool for the analysis of slender and moderate-aspect-ratio concrete shear walls.
机译:近几十年来,已经提出了不同的宏观模型,用于模拟混凝土剪力墙的行为,因为它们在城市建筑的地震性能方面发挥着重要作用。在这项工作中评估了Timoshenko的光束理论评价细长和中等纵横比混凝土剪力墙的行为的能力。为此目的,首先将添加基于非线性位移的TimosheNko光纤元素以开放软件。基于改进的压缩场理论的新构成模型用于材料的应力 - 应变关系。为了验证所使用的元素和材料,将数值模型的结果与经过循环和地震载荷的混凝土剪力墙的一组实验室测试进行了比较(摇动台测试)。对数值模型的评估和实验结果表明,用于模拟钢筋混凝土墙的分析程序预测其整体和局部反应,可接受的准确性。因此,它可以用作分析细长和中等纵横比混凝土剪力墙的可靠工具。

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