Reliability analysis of precast prestressed hollow core slabs

Q2 Engineering
B. Rekha, R. Ravindra
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引用次数: 0

Abstract

The precast concrete elements encompass uncertainty, due to randomness of the applied loads, concrete characteristics and dimensional inaccuracies. The proposed work focuses on reliability analysis of precast Prestressed Hollow Core (PHC) slabs in terms of statistical properties of the contributing parameters using Monte Carlo simulation. The random variables relating to geometrical dimensions of PHC slab such as effective depth (dp) and web-width (bw) for different grades of concrete (fc) are considered for analysis. The numerical models on ANSYS APDL release18.1 and Concise Beam ver.4.7 are validated with the experimental results with respect to failure load and deflection. The bending moments corresponding to failure loads under single Line Loading (LL) at mid span, Two Line Loading (TLL) and Uniformly Distributed Loading (UDL) cases were evaluated by modelling using Concise Beam software. The reliability analysis was implemented by developing a program in MATLAB R2015a software. It was observed that there is consistent level of reliability in the design methodology adopted in ACI-318.
预制预应力空心芯板的可靠度分析
由于施加荷载的随机性、混凝土特性和尺寸的不准确性,预制混凝土构件包含了不确定性。本文采用蒙特卡罗模拟方法对预制预应力空心空心板的可靠性进行了统计特性分析。考虑了与PHC板几何尺寸相关的随机变量,如不同等级混凝土(fc)的有效深度(dp)和腹板宽度(bw)。在ANSYS APDL release18.1和简明梁ver.4.7上建立的数值模型在破坏荷载和挠度方面与试验结果进行了验证。利用简明梁软件对跨中单线加载、双线加载和均布加载三种情况下的破坏荷载对应弯矩进行建模计算。通过在MATLAB R2015a软件中编写程序实现了可靠性分析。据观察,在ACI-318中采用的设计方法具有一致的可靠性水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Reliability and Safety
International Journal of Reliability and Safety Engineering-Safety, Risk, Reliability and Quality
CiteScore
1.00
自引率
0.00%
发文量
1
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