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Effects of Building Configuration on Seismic Performance of RC Buildings by Pushover Analysis

机译:推覆分析对建筑结构对RC房屋抗震性能的影响。

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摘要

In the recent earthquakes, concrete structures have been severely damaged or collapsed, which has raised questions against the seismic adequacy of existing buildings. These existing reinforced concrete buildings need to be evaluated to determine the capacity to resist seismic loads. The behavior of a building during earthquakes depends critically on its overall shape, size and geometry. Conventional approach to earthquake resistant design of buildings depends upon providing the building with strength, stiffness and inelastic deformation capacity which are great enough to withstand a given level of earthquake-generated force. This is generally accomplished through the selection of an appropriate building configuration and the careful detailing of structural members. In this research, nonlinear pushover analysis has been used to evaluate the seismic performance of three buildings with three different plans having same area and height This method determines the base shear capacity of the building and performance level of each part of building under varying intensity of seismic force. The results of effects of different plan on seismic response of buildings have been presented in terms of displacement, base shear and plastic hinge pattern.
机译:在最近的地震中,混凝土结构被严重破坏或倒塌,这对现有建筑物的抗震能力提出了质疑。这些现有的钢筋混凝土建筑需要进行评估,以确定抗震能力。建筑物在地震中的行为关键取决于建筑物的整体形状,大小和几何形状。建筑物抗震设计的常规方法取决于为建筑物提供足够的强度,刚度和非弹性变形能力,以承受给定水平的地震作用力。通常,这是通过选择合适的建筑配置并仔细构造构件来实现的。在这项研究中,非线性推覆分析已用于评估三个具有相同面积和高度的不同平面的建筑物的抗震性能。该方法确定建筑物在不同地震强度下的基础抗剪承载力和建筑物各部分的性能水平力。从位移,基础剪力和塑性铰模式等方面,提出了不同方案对建筑物地震响应的影响结果。

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