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A performance-based design framework for the integrated collapse and non-collapse assessment of wind excited buildings

机译:基于性能的设计框架,用于对风振建筑物的倒塌和不倒塌进行综合评估

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Current prescriptive design provisions are moving towards performance-based design approaches in which system-level probabilistic measures are used to explicitly describe performance. While earthquake engineering has embraced these changes over the last few decades, the same cannot be said for wind engineering where design provisions have remained predominantly prescriptive. The significant wind related economic losses incurred each year around the world has spurred strong interest in developing general performance-based wind engineering frameworks. To this end, this paper presents a simulation-based framework for multistory wind excited buildings that rigorously integrates system level estimates of both collapse and non-collapse losses. In particular, it is proposed to use the theory of dynamic shakedown as an efficient means for describing the collapse probability of the main wind force resisting system. The practicality and potential of the proposed framework is illustrated on a full scale case study. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当前的规范性设计规定正在朝着基于性能的设计方法发展,在这些方法中,系统级的概率度量用于明确描述性能。尽管在过去的几十年中,地震工程已经接受了这些变化,但对于风能工程却不能说同样的话,在风能工程中,设计规定仍然是主要规定。全世界每年发生的与风有关的重大经济损失激起了人们对基于性能的通用风能框架​​开发的浓厚兴趣。为此,本文提出了一种基于仿真的多层风振建筑框架,该框架严格集成了崩溃和非崩溃损失的系统级估计。特别地,提出使用动态振动理论作为描述主要风力抵抗系统的崩溃概率的有效手段。拟议框架的实用性和潜力在全面的案例研究中得到了说明。 (C)2017 Elsevier Ltd.保留所有权利。

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