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Random imperfection effect on reliability of space structures with different supports

机译:随机缺陷对不同支撑空间结构可靠性的影响

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The existence of initial imperfections in manufacturing or assembly of double-layer space structures having hundreds or thousands of members is inevitable. Many of the imperfections, such as the initial curvature of the members and residual stresses in members, are all random in nature. In this paper, the probabilistic effect of initial curvature imperfections in the load bearing capacity of double-layer grid space structures with different types of supports have been investigated. First, for the initial curvature imperfection of each member, a random number is generated from a gamma distribution. Then, by employing the same probabilistic model, the imperfections are randomly distributed amongst the members of the structure. Afterwards, the collapse behavior and the ultimate bearing capacity of the structure are determined by using nonlinear push down analysis and this procedure is frequently repeated. Ultimately, based on the maximum values of bearing capacity acquired from the analysis of different samples, structure's reliability is obtained by using Monte Carlo simulation method. The results show the sensitivity of the collapse behavior of double-layer grid space structures to the random distribution of initial imperfections and supports type.
机译:在具有数百或数千个构件的双层空间结构的制造或组装中存在初始缺陷是不可避免的。本质上,许多缺陷(例如构件的初始曲率和构件中的残余应力)都是随机的。在本文中,研究了初始曲率缺陷对具有不同支撑类型的双层网格空间结构的承载能力的概率影响。首先,对于每个构件的初始曲率缺陷,根据伽马分布生成一个随机数。然后,通过采用相同的概率模型,缺陷将在结构的成员之间随机分布。然后,通过非线性下推分析确定结构的倒塌行为和极限承载力,并经常重复此过程。最终,基于通过对不同样本进行分析获得的承载力最大值,使用蒙特卡洛模拟方法获得了结构的可靠性。结果表明双层网格空间结构的倒塌行为对初始缺陷和支座类型随机分布的敏感性。

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