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Three-dimensional beam-truss model for reinforced concrete walls and slabs - part 1: modeling approach, validation, and parametric study for individual reinforced concrete walls

机译:钢筋混凝土墙和板的三维梁桁架模型-第1部分:单个钢筋混凝土墙的建模方法,验证和参数研究

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A three-dimensional beam-truss model for reinforced concrete (RC) walls developed by the first two authors in a previous study is modified to better represent the flexure-shear interaction and more accurately capture diagonal shear failures under static cyclic or dynamic loading. The modifications pertain to the element formulations and the determination of the inclination angle of the diagonal elements. The modified beam-truss model is validated using the experimental test data of eight RC walls subjected to static cyclic loading, including two non-planar RC walls under multiaxial cyclic loading. Five of the walls considered experienced diagonal shear failure after reaching their flexural strength, while the other three walls had a flexure-dominated response. The numerically computed lateral force-lateral displacement and strain contours are compared with the experimentally recorded response and damage patterns for the walls. The effects of different model parameters on the computed results are examined by means of parametric analyses. Extension of the model to simulate RC slabs and coupled RC walls is presented in a companion paper. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:由前两位作者在先前的研究中开发的钢筋混凝土(RC)墙的三维梁-桁架模型经过修改,可以更好地表示挠曲-剪力相互作用,并更准确地捕获静态循环或动态载荷下的对角剪切破坏。修改涉及元素公式和对角元素倾斜角度的确定。使用八个承受静态循环荷载的RC墙的实验测试数据(包括两个多轴循环荷载下的非平面RC墙)的实验测试数据验证了修改后的桁架模型。五个墙体在达到其弯曲强度后经历了对角线剪切破坏,而其他三个墙体则以弯曲为主。将数值计算的横向力-横向位移和应变轮廓与实验记录的墙的响应和破坏模式进行比较。通过参数分析来检查不同模型参数对计算结果的影响。随附论文中对模型进行了扩展以模拟RC板和耦合的RC墙。版权所有(C)2016 John Wiley&Sons,Ltd.

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