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Three-Dimensional Cyclic Beam-Truss Model for Nonplanar Reinforced Concrete Walls

机译:非平面钢筋混凝土墙的三维循环梁桁架模型

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摘要

A three-dimensional nonlinear cyclic model for nonplanar reinforced concrete walls is presented. Nonlinear Euler-Bemoulli fiber-section beam elements are used to represent steel and concrete in the vertical direction, and nonlinear trusses are used to represent the steel and concrete in the horizontal direction and the concrete in the diagonal directions. The model represents the effects of flexure-shear interaction by computing the stress and strains in the horizontal and vertical directions and by considering biaxial effects on the behavior of concrete diagonals and accounts for mesh-size effects. The model is validated by comparing the experimentally measured and numerically computed response of three reinforced concrete T-shape, C-shape, and I-shape section wall specimens, respectively, with the response of the latter two characterized by crushing of the concrete in the diagonal direction. The overall force-deformation and local strain responses are presented. Finally, the computed response using the model developed here is compared with the Euler-Bernoulli fiber-section beam models.
机译:提出了非平面钢筋混凝土墙的三维非线性循环模型。非线性Euler-Bemoulli纤维截面梁单元用于表示钢和混凝土的垂直方向,非线性桁架用于表示钢和混凝土的水平方向以及对角线的混凝土。该模型通过计算水平和垂直方向上的应力和应变,并考虑对混凝土对角线性能的双轴效应并考虑了网眼尺寸效应,来表示挠曲-剪切相互作用的效应。通过比较三个钢筋混凝土T形,C形和I形截面墙试件的实验测量值和数值计算的响应,以及后两个响应的特征(通过在混凝土中压碎混凝土)来验证模型的有效性。对角线方向。介绍了整体力变形和局部应变响应。最后,将使用此处开发的模型计算出的响应与Euler-Bernoulli纤维截面梁模型进行比较。

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