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Cost-Based Design of Nonstructural Elements for Tall Buildings under Extreme Wind Environments

机译:极端风环境下高层建筑非结构要素的基于成本的设计

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摘要

The early stages of the design process of wind-excited tall buildings involve several decisions on structural typology, shape, orientation, optional control system, and type and distribution of nonstructural elements. Focusing on this last aspect, the main issue addressed in this paper is a systematic comparative cost-based analysis accounting for the damage at the nonstructural system level induced by extreme wind loads. This design task is accomplished in this study by making use of a cost-based decision framework developed by the authors, designated life cycle cost wind design (LCCWD), specifically tailored for wind-excited tall buildings. Various design configurations are investigated by comparing the lifetime cost induced by wind-load damage as evaluated by adaptation of the Pacific Earthquake Engineering Research Center (PEER) equation, which was originally conceived for seismic engineering. This choice emphasizes the role of a multihazard-inspired design process. The following items are jointly considered: (1) uncertainties in wind-load characterization, structural response, and damage models; (2) wind directionality; (3) dynamic response model accounting for non-shear-type vibration modes and torsional effects; and (4) monetary loss accumulation by partitioning nonstructural damage effects among various building components. Furthermore, the LCCWD is expanded to include internalization of external costs, whereby acceleration-based perception effects on occupants' comfort lead to business interruptions and consequent downtime losses; these items at are included as indirect costs. Application of the procedure to a case study enables automated, systematic, and cost-effective comparison of various design alternatives. (c) 2019 American Society of Civil Engineers.
机译:受风激励的高层建筑设计过程的早期涉及结构类型,形状,方向,可选控制系统以及非结构元素的类型和分布的多个决策。着眼于这最后一个方面,本文解决的主要问题是系统的基于成本的比较分析,该分析考虑了极端风荷载对非结构系统水平造成的损害。在这项研究中,这项设计任务是通过使用作者开发的基于成本的决策框架来完成的,该框架是专门为受风激高层建筑量身定制的指定生命周期成本风设计(LCCWD)。通过比较由太平洋地震工程研究中心(PEER)方程(最初是为地震工程设计的)的适应性评估所评估的风荷载破坏引起的生命周期成本,研究了各种设计配置。这种选择强调了受多灾种启发的设计过程的作用。共同考虑以下各项:(1)风荷载特性,结构响应和损伤模型的不确定性; (2)风向性; (3)考虑非剪切型振动模式和扭转效应的动态响应模型; (4)通过在各个建筑组成部分之间分配非结构性破坏影响来积累金钱损失。此外,LCCWD已扩展为包括外部成本的内部化,从而基于加速度的感知对乘员舒适度的影响导致业务中断和随之而来的停机时间损失;这些项目按间接费用计入。将该程序应用到案例研究中,可以自动,系统且经济高效地比较各种设计方案。 (c)2019美国土木工程师学会。

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