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Reliability of stability of single-layer latticed shells with spatially correlated initial geometric imperfection modeled using conditional autoregressive model

机译:使用条件自回归模型建模的具有空间相关的初始几何缺陷的单层网格壳体稳定性的可靠性

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Latticed shells are extensively used for large-span structures. Their design is often governed by the global instability requirement stipulated in the Chinese design code for the specified gravity load and initial geometric imperfection (IGI). However, the reliability-basis for the recommended design requirement that a critical load factor of 2 need to be achieved is unknown. In the present study, it is proposed that the spatially varying IGI can be adequately modeled using the conditional autoregressive model. It is shown that this model is sufficiently flexible in modeling spatially varying correlated imperfection and can cope with irregular grid systems. By using this model for IGI and considering global instability, the probability distributions of the load capacity and the failure probabilities of spherical and cylindrical latticed shells designed according to the Chinese design code are evaluated. The evaluation is also carried out by representing the IGI shape using the spatially independent Gaussian model and the first eigen buckling mode (1EBM) that is recommended by the design code. It is shown that the use of the 1EBM to represent the IGI shape does not necessarily lead to conservative estimates of the failure probabilities as compared to those obtained by considering spatially varying stochastic imperfection shapes. The results shown that the estimated failure probability is sensitive to the assumed stochastic model for and standard deviation of the IGI at each joint of the latticed shells. Furthermore, the failure probability of the spherical latticed shell differs from that of the cylindrical latticed shell. The reliability analysis results also indicate that the use of a critical load factor of 2 implemented in the code for design of the latticed shell, in general, lead to an annual failure probability for global instability less than 10(-5). A sensitivity analysis indicates that the code recommended critical load factor can be reduced to 1.75 while achieving a target reliability index often adopted for design code calibration.
机译:晶格壳体广泛用于大跨度结构。它们的设计通常受中国设计规范中针对特定重力载荷和初始几​​何缺陷(IGI)规定的全球不稳定性要求的约束。但是,尚不清楚建议的设计要求是否需要达到2的临界负载系数的可靠性基础。在本研究中,建议可以使用条件自回归模型对空间变化的IGI进行适当的建模。结果表明,该模型在建模空间变化的相关缺陷方面具有足够的灵活性,并且可以应对不规则的网格系统。通过将该模型用于IGI,并考虑了全局不稳定性,评估了根据中国设计规范设计的球形和圆柱形网格壳的承载能力的概率分布和失效概率。还可以通过使用空间独立的高斯模型和设计规范建议的第一本征屈曲模式(1EBM)来表示IGI形状来进行评估。结果表明,与通过考虑空间变化的随机缺陷形状获得的结果相比,使用1EBM表示IGI形状并不一定会导致对失效概率的保守估计。结果表明,估计的失效概率对网状壳每个接头处的IGI假设随机模型和标准偏差敏感。此外,球形网格壳的失效概率不同于圆柱形网格壳的失效概率。可靠性分析结果还表明,通常在代码中使用2的临界载荷因子来设计网格壳,这会导致年度全局失稳失败概率小于10(-5)。敏感性分析表明,代码建议的关键负载因子可以降低到1.75,同时实现通常用于设计代码校准的目标可靠性指标。

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