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An analytical investigation on the seismic retrofit of older medium-rise reinforced concrete shear walls under lateral loads

机译:横向荷载作用下中高层钢筋混凝土剪力墙抗震改造分析研究

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This paper describes an analytical investigation on the behavior and retrofit of older medium-rise monolithic cast-in-place reinforced concrete shear walls under lateral loads. A set of prototype and parametric walls is designed to represent building structures from the 1960s and early 1970s in regions of the US with high seismicity. Analytical models of the walls are constructed using a micro-plane fiber element that can capture axial-flexural-shear interaction in the nonlinear range. These models are then used to conduct nonlinear lateral load analyses to evaluate the following three wall retrofit methods recommended by ASCE 41-06: (1) reduction of flexural strength; (2) addition of concrete confinement; and (3) increased shear strength. The results show that older reinforced concrete shear walls are likely to exhibit limited lateral displacement capacity without retrofit or with the use of a single retrofit approach. A combination of different retrofit methods may be needed for improved behavior.
机译:本文描述了对侧向荷载作用下较旧的中层整体式现浇钢筋混凝土剪力墙的性能和改造的分析研究。设计了一组原型墙和参数墙,以代表1960年代至1970年代早期美国地震烈度较高的建筑结构。墙的分析模型是使用微平面纤维元件构建的,该元件可以捕获非线性范围内的轴向-弯曲-剪切相互作用。然后,这些模型用于进行非线性侧向载荷分析,以评估ASCE 41-06建议的以下三种墙体改型方法:(1)降低抗弯强度; (2)增加混凝土限制; (3)提高剪切强度。结果表明,较旧的钢筋混凝土剪力墙不进行翻新或使用单一翻新方法,其侧向位移能力可能有限。可能需要组合使用不同的改造方法才能改善行为。

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