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首页> 外文期刊>Journal of structural engineering >Seismic Performance Quantification of Reinforced Masonry Structural Walls with Boundary Elements
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Seismic Performance Quantification of Reinforced Masonry Structural Walls with Boundary Elements

机译:带边界元的砌体结构墙的抗震性能量化

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The design of reinforced masonry (RM) structural walls subject to high inelastic curvature demands can often be hindered by prescriptive requirements in design codes regarding the ratio between compression zone depth (c) and wall length (fw). A possible solution to this would be the detailing of a confined boundary element at the critical wall toes to increase the curvature ductility capacity of the plastic hinge region. The Masonry Standards Joint Committee (MSJC) code currently prescribes the possible use of such boundary elements for the special reinforced masonry shear walls category. However, the MSJC provides no relevant prescriptive detailing guidance, leaving the onus on the designer to specify appropriate detailing to ensure the desired performance. The results of an experimental program designed to develop a confinement scheme based on conventional masonry construction practices are reported in this paper. Five half-scale RM walls, detailed with confined boundary elements containing a double layer of vertical reinforcement enclosed by stirrups, were tested under reversed cycles of quasi-static loading. The walls, detailed to represent typical low- to medium-rise construction, varied by their height, length, and aspect and vertical reinforcement ratios. Test results are reported in terms of force-based seismic design parameters, such as the wall strength, stiffness and ductility characteristics, as well as displacement and performance-based seismic design parameters for the next-generation of seismic codes in North America. Overall, the performance of the walls indicates that the selected boundary element detailing is a designer-friendly means of addressing the need for lower c/l_w ratios and higher curvature levels as indicated by the MSJC.
机译:在设计规范中,关于压缩区深度(c)与壁长(fw)之比的规定性要求通常会阻碍承受高非弹性曲率要求的加筋砌筑(RM)结构墙的设计。对此的可能解决方案是在临界壁脚趾处形成有限的边界元素,以增加塑料铰链区域的曲率延展能力。砌体标准联合委员会(MSJC)规范当前规定了此类边界元素可用于特殊的钢筋砌体剪力墙类别。但是,MSJC没有提供任何相关的规范性详细说明指南,设计人员有责任指定适当的详细说明以确保所需的性能。本文报道了一个实验程序的结果,该程序旨在开发基于常规砌体建造实践的约束方案。在准静态荷载的反向循环下,测试了五个半比例的RM墙,详细描述了包含边界的双重约束的边界单元,这些边界包含了箍筋。墙壁详细表示了典型的中低层建筑,其高度,长度,长宽比和垂直配筋率各不相同。测试结果以基于力的抗震设计参数(如墙体强度,刚度和延性特性)以及北美下一代地震规范的基于位移和性能的抗震设计参数报告。总体而言,墙体的性能表明所选边界元素的细部设计是设计者友好的方法,可满足对MSJC指出的更低c / lw比和更高曲率水平的需求。

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