Deterministic Wind Load Dynamic Analysis of High Rise Steel Buildings Including P-Delta Effects

A. Dheeb, R. M. Abbas
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Abstract

This study concerns with the investigation of the second-order geometric nonlinearity effects of P-Delta analysis on the dynamic response of high rise steel buildings due to deterministic wind load. Linear and nonlinear time history analyses were conducted to analyze different tall steel building models adopted in the study. Five steel building models ranging from 10 to 50 stories were numerically modeled and analyzed using finite element code ETABS (version 16.0.3). Deterministic dynamic wind load per ASCE 7-10 is applied to the buildings as a main lateral load. Comparative study between linear and nonlinear time history analyses reveals that nonlinear time history analysis including P-Delta effects displayed larger values of buildings lateral sway than those of linear time history analysis. Generally, including P-Delta effect in the nonlinear analysis increases the flexibility of the building structure, and thus increases response peak values and that peak values occur at a longer time periods indicating lesser response oscillations. The study recommends that P-Delta effect need to be addressed by any dynamic wind analysis for tall steel buildings with 20 story height or more.
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考虑P-Delta效应的高层钢结构确定性风荷载动力分析
本文研究了在确定性风荷载作用下p - δ分析对高层钢结构动力响应的二阶几何非线性效应。对研究中采用的不同高层钢结构模型进行了线性和非线性时程分析。使用有限元代码ETABS(版本16.0.3)对5个10至50层的钢结构建筑模型进行了数值模拟和分析。ASCE 7-10规定的确定性动风荷载作为主要侧载应用于建筑物。线性时程分析与非线性时程分析的对比研究表明,考虑p - δ效应的非线性时程分析比线性时程分析显示出更大的建筑物侧移值。通常,在非线性分析中加入P-Delta效应会增加建筑结构的柔韧性,从而增加响应峰值,峰值出现的时间更长,表明响应振荡较小。该研究建议,对于20层或以上的高层钢结构建筑,任何动态风分析都需要解决P-Delta效应。
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