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首页> 外文期刊>Journal of structural engineering >Distributed Yielding Concept for Improved Seismic Collapse Performance of Rigid Wall-Flexible Diaphragm Buildings
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Distributed Yielding Concept for Improved Seismic Collapse Performance of Rigid Wall-Flexible Diaphragm Buildings

机译:改善刚性墙体柔性膜片建筑抗震性能的分布式屈服概念

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摘要

Rigid wall-flexible diaphragm (RWFD) buildings are a common type of single-story construction in North America, Europe, and New Zealand that incorporate rigid in-plane concrete or masonry walls and flexible in-plane wood, steel, or hybrid roof diaphragms. RWFD buildings have shown poor seismic performance during past earthquake events. In particular, it has been observed that the global seismic response is dominated by the response of the diaphragm, which is mainly attributed to large in-plane diaphragm displacements that significantly exceed the displacements of in-plane walls. In this study, the concept of distributed yielding in the flexible diaphragm by weakening certain intermediate diaphragm zones is explored as a cost-effective means to improve the seismic collapse capacity of RWFD buildings and mitigate their seismic vulnerability. A two-dimensional numerical framework was developed specifically for analyzing RWFD buildings and was used to evaluate the proposed concept. Results of nonlinear dynamic time-history response analyses conducted on a typical RWFD building incorporating a wood roof diaphragm show that distributing the inelastic response of the flexible diaphragm along its span is beneficial to the seismic collapse capacity of RWFD buildings. A seismic design approach based on this concept is also formulated. (C) 2015 American Society of Civil Engineers.
机译:刚性墙体柔性隔膜(RWFD)建筑物是北美,欧洲和新西兰的单层建筑的常见类型,其结合了刚性的平面混凝土或砌体墙以及柔性的平面木,钢或混合屋顶隔板。 RWFD建筑物在过去的地震事件中显示出较差的地震性能。特别地,已经观察到,整体地震响应主要由膜片的响应决定,这主要归因于大的平面内膜片位移,该位移大大超过了平面内壁的位移。在这项研究中,通过削弱某些中间隔板区域来探索柔性隔板中的分布式屈服概念,是提高RWFD建筑物的地震倒塌能力并减轻其地震脆弱性的一种经济有效的方法。专门开发了一个二维数值框架来分析RWFD建筑物,并用于评估所提出的概念。在典型的装有木质屋顶隔板的RWFD建筑物上进行的非线性动态时程响应分析结果表明,沿其跨度分布柔性隔板的非弹性响应有利于RWFD建筑物的地震倒塌能力。还提出了基于该概念的抗震设计方法。 (C)2015年美国土木工程师学会。

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