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首页> 外文期刊>Journal of structural engineering >Fragility Analysis for Performance-Based Seismic Design of Engineered Wood Shearwalls
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Fragility Analysis for Performance-Based Seismic Design of Engineered Wood Shearwalls

机译:工程木剪力墙基于性能的抗震设计的脆弱性分析

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Performance-based engineering concepts applied to both structural design and assessment have gained interest among structural engineers and researchers in recent years. Performance-based design applied to building systems includes selection of appropriate structural systems and configurations to ensure that the structure has adequate strength, stiffness, and energy dissipation capacity to respond to loadings, including those arising from natural hazards, without exceeding permissible damage states. Although performance-based design has advanced for some materials and structural types, such as steel and reinforced concrete buildings and bridges built in high seismic regions, the application to light-frame wood structures has only recently been explored. This paper investigates the application of fragility techniques to the seismic design of engineered woodframe shearwalls. The methodology developed herein provides a technical basis for the development of future performance-based design provisions for shearwalls in light-frame structures subject to earthquake loading. In the present study, shearwalls are treated as isolated subassemblies. Nonlinear dynamic time-history analysis is used to predict the performance of the shearwalls considering a suite of suitably scaled characteristic ordinary ground motions taken to represent the seismic hazard. Examples of fragility curves are developed considering peak wall displacement and ultimate uplift force at the hold-down. The effects of nailing schedule, seismic weight, and choice of response modification factor (R) are considered.
机译:近年来,应用于结构设计和评估的基于性能的工程概念引起了结构工程师和研究人员的兴趣。应用于建筑系统的基于性能的设计包括选择适当的结构系统和配置,以确保结构具有足够的强度,刚度和能量消散能力,以应对包括自然灾害引起的载荷在内的载荷,且不会超出允许的损坏状态。尽管基于性能的设计在某些材料和结构类型方面已经取得了进步,例如在高地震地区建造的钢结构和钢筋混凝土建筑以及桥梁,但直到最近才探索将其应用于轻型木结构。本文研究了脆性技术在工程木结构剪力墙抗震设计中的应用。本文开发的方法论为轻型框架结构受地震荷载作用下的剪力墙未来基于性能的设计规定的开发提供了技术基础。在本研究中,剪力墙被视为独立的子组件。非线性动态时程分析用于预测剪力墙的性能,考虑了代表地震危险性的一组适当缩放的特征普通地面运动。考虑到峰值壁位移和压紧力时的最终提升力,得出了脆性曲线的示例。考虑钉钉计划,地震重量和响应修正系数(R)的选择的影响。

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