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Practical Nonlinear Modeling of Reinforced Concrete Structural Walls

机译:钢筋混凝土结构墙的实用非线性建模

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摘要

Current engineering practice typically relies on the use of fiber-based modeling approaches with uncoupled axial-bending (P-M) and shear (V) responses to simulate nonlinear behavior of reinforced concrete (RC) structural walls. However, more sophisticated numerical models are available that incorporate coupled P-M-V behavior. The effect of using uncoupled and coupled modeling approaches and the influence of various modeling assumptions, particularly modeling parameters related to wall shear behavior, on computed global and local building responses are reported. A five-story archetype RC wall-frame building designed according to current U.S. code provisions is used for the assessment. The results indicate that modeling parameters associated with wall shear behavior have a significant effect on computed responses for uncoupled models; use of commonly recommended effective shear stiffness of 0.2EcAw to account for effects of concrete cracking provides a reasonable estimate of roof displacement response. However, wall shear demands and interstory drift at stories where wall yielding occurs tend to be overestimated and underestimated, respectively, in comparison with results obtained using coupled wall models.
机译:当前的工程实践通常依赖于基于纤维的建模方法以及轴向(P-M)和剪切(V)耦合响应来模拟钢筋混凝土(RC)结构墙的非线性行为。但是,可以使用结合了P-M-V行为的更复杂的数值模型。报告了使用非耦合和耦合建模方法的影响以及各种建模假设(尤其是与墙体剪力行为相关的建模参数)对计算的整体和局部建筑响应的影响。根据目前的美国法规规定设计的五层原型RC墙框架建筑用于评估。结果表明,与壁面剪力有关的建模参数对非耦合模型的计算响应有显着影响。使用通常推荐的有效剪切刚度0.2EcAw来考虑混凝土开裂的影响可以合理估算屋顶位移响应。但是,与使用耦合墙模型获得的结果相比,发生墙屈服的楼层的墙剪需求和层间漂移往往分别被高估和低估。

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