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Probabilistic analysis of spectral displacement by NSA and NDA

机译:NSA和NDA对光谱位移的概率分析

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Main objective of the present study is to determine the statistical properties and suitable probability distribution functions of spectral displacements from nonlinear static and nonlinear dynamic analysis within the frame work of Monte Carlo simulation for typical low rise and high rise RC framed buildings located in zone III and zone V and designed as per Indian seismic codes. Probabilistic analysis of spectral displacement is useful for strength assessment and loss estimation. To the author's knowledge, no study is reported in literature on comparison of spectral displacement including the uncertainties in capacity and demand in Indian context. In the present study, uncertainties in capacity of the building is modeled by choosing cross sectional dimensions of beams and columns, density and compressive strength of concrete, yield strength and elastic modulus of steel and, live load as random variables. Uncertainty in demand is modeled by choosing peak ground acceleration (PGA) as a random variable. Nonlinear static analysis (NSA) and nonlinear dynamic analysis (NDA) are carried out for typical low rise and high rise reinforced concrete framed buildings using IDARC 2D computer program with the random sample input parameters. Statistical properties are obtained for spectral displacements corresponding to performance point from NSA and maximum absolute roof displacement from NDA and suitable probability distribution functions viz., normal, Weibull, lognormal are examined for goodness-of-fit From the hypothesis test for goodness-of-fit, lognormal function is found to be suitable to represent the statistical variation of spectral displacement obtained from NSA and NDA.
机译:本研究的主要目的是通过蒙特卡罗模拟框架中的非线性静态和非线性动力分析,确定位于III区和低层的典型RC和高层RC框架建筑物的频谱位移的统计特性和合适的概率分布函数。 V区,并按照印度地震法规设计。频谱位移的概率分析对于强度评估和损耗估计很有用。据作者所知,尚无文献报道有关光谱位移比较的研究,包括印度环境下容量和需求的不确定性。在本研究中,通过选择梁和柱的横截面尺寸,混凝土的密度和抗压强度,钢筋的屈服强度和弹性模量以及活荷载作为随机变量,对建筑物的容量不确定性进行建模。需求不确定性通过选择峰值地面加速度(PGA)作为随机变量来建模。使用具有随机样本输入参数的IDARC 2D计算机程序,对典型的低层和高层钢筋混凝土框架建筑进行了非线性静态分析(NSA)和非线性动态分析(NDA)。统计特性的获得是对应于来自NSA的性能点的光谱位移和来自NDA的最大绝对屋顶位移,以及适合的概率分布函数,即检验正态分布,威布尔分布,对数正态分布的拟合优度。拟合,发现对数正态函数适合代表从NSA和NDA获得的光谱位移的统计变化。

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