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首页> 外文期刊>Advances in Structural Engineering >Temperature gradient modeling of a steel box-girder suspension bridge using Copulas probabilistic method and field monitoring
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Temperature gradient modeling of a steel box-girder suspension bridge using Copulas probabilistic method and field monitoring

机译:Copulas概率方法和现场监测钢箱梁悬架桥温度梯度建模

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摘要

A novel copula-based probabilistic model is proposed to establish the temperature difference analysis model for a long-span suspension bridge’s steel box girder. The key idea is to express a two-dimensional function of the temperature difference in flat steel box girder by using copulas. The maximum and minimum values of daily temperature difference model was developed using long-terms structural health monitoring data. Then, the correlation between adjacent temperature differences is investigated using five types of copulas. Akaike information criterion (AIC) is used to select an optimal model from five types of copulas, and the optimal joint function (two-dimensional function) for steel box girder’s temperature difference is established. Finally, the structure’s temperature gradient model is extrapolated for the service life of the structure by using Monte Carlo method. Moreover, this paper discusses the temperature gradient models using five types of common copulas and four types of time-varying copulas. The result shows that the t-copula is the optimal function to build the two-dimensional functions for steel box girder’s temperature difference, and the temperature model along the transverse direction can offer useful information that is not available in the design codes.
机译:提出了一种新型的基于Copula的概率模型,以建立长跨度悬架桥钢箱梁的温差分析模型。关键思想是使用Copulas表示扁钢箱梁温差的二维功能。每日温差模型的最大值和最小值是使用长期结构健康监测数据开发的。然后,使用五种类型的Copulas研究了相邻温度差之间的相关性。 Akaike信息标准(AIC)用于从五种类型的Copulas选择最佳模型,并且建立了钢箱梁的最佳关节功能(二维功能)。最后,通过使用蒙特卡罗方法将结构的温度梯度模型推断为结构的使用寿命。此外,本文讨论了使用五种类型的常见Copulas和四种类型的时变金属的温度梯度模型。结果表明,T-Copula是构建钢箱梁的温差的二维功能的最佳功能,沿横向的温度模型可以提供设计代码中不可用的有用信息。

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