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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Methods of analysis for buildings with uni-axial and bi-axial asymmetry in regions of lower seismicity
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Methods of analysis for buildings with uni-axial and bi-axial asymmetry in regions of lower seismicity

机译:下地震区区域中具有单轴和双轴不对称的建筑物的分析方法

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摘要

Most buildings feature core walls (and shear walls) that are placed eccentrically within the building to fulfil architectural requirements. Contemporary earthquake design standards require three dimensional (3D) dynamic analysis to be undertaken to analyse the imposed seismic actions on this type of buildings. A static method of analysis is always appealing to design practitioners because results from the analysis can always be evaluated independently by manual calculation techniques for quality control purposes. However, the equivalent static analysis method (also known as the lateral load method) which involves application of an equivalent static load at a certain distance from the center of mass of the buildings can generate results that contradict with results from dynamic analysis. In this paper the Generalised Force Method of analysis has been introduced for multi-storey buildings. Algebraic expressions have been derived to provide estimates for the edge displacement ratio taking into account the effects of dynamic torsional actions. The Generalised Force Method which is based on static principles has been shown to be able to make accurate estimates of torsional actions in seismic conditions. The method is illustrated by examples of two multi-storey buildings. Importantly, the black box syndrome of a 3D dynamic analysis of the building can be circumvented.
机译:大多数建筑物都具有核心墙(和剪切墙),围绕建筑内偏心地放置,以满足架构要求。当代地震设计标准需要三维(3D)动态分析,以分析这种建筑物上的强加地震作用。一种静态分析方法始终吸引设计从业者,因为可以通过用于质量控制目的的手动计算技术来独立地评估分析结果。然而,涉及在距建筑物的质量中心的一定距离处施加在一定距离处的等效静载荷的等效静态分析方法(也称为横向载荷方法)可以产生与动态分析的结果相矛盾的结果。本文介绍了用于多层建筑物的普遍力分析方法。已经得出了代数表达式,以考虑到动态扭转行为的影响,为边缘位移比提供估计。基于静态原理的广义力方法已经证明能够在地震条件下进行准确估计扭转动作。该方法由两个多层建筑的示例说明。重要的是,建筑物的3D动态分析的黑匣子综合征可以被规避。

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