首页> 外文期刊>Journal of bridge engineering >Temperature Behavior and Stability Analysis of Orthotropic Steel Bridge Deck during Gussasphalt Pavement Paving
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Temperature Behavior and Stability Analysis of Orthotropic Steel Bridge Deck during Gussasphalt Pavement Paving

机译:正交各向异性沥青混凝土桥面铺装过程中的温度特性和稳定性分析

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摘要

Gussasphalt concrete (GAC) is increasingly used in long-span steel bridge deck pavements because of its impermeability and compliance. However, the paving temperature of GAC is very high, inducing a significant nonuniform temperature distribution in the bridge during paving, and this has an adverse effect on the serviceability of bridge. In this study, the temperature behavior and stability of orthotropic steel bridge deck (OSBD) during the GAC paving were investigated. First, the temperature distribution of a steel bridge during the GAC paving was studied using field monitoring and numerical simulation. Second, the temperature stress and deformation of the OSBD during GAC paving were calculated. Third, the effect of the temperature deformation of OSBD on pavement unevenness was examined. Last, a submodel and eigenbuckling analysis method was used to evaluate the stability of the U ribs during the GAC paving. The results show that uplift and expanded deformation occur in the steel bridge deck during the GAC paving, and this deformation could cause a nonuniform thickness distribution of pavement. The temperature load during paving could reduce the ultimate bearing capacity of the U ribs in the paving area, and there is a hidden danger of instability in the OSBD during the GAC paving. (C) 2017 American Society of Civil Engineers.
机译:Gussasphalt混凝土(GAC)由于其不渗透性和顺应性而越来越多地用于大跨度钢桥面铺面。但是,GAC的摊铺温度非常高,在摊铺过程中会导致桥梁中明显的温度分布不均匀,这对桥梁的使用寿命造成不利影响。在这项研究中,研究了GAC铺装过程中正交异性钢桥面板(OSBD)的温度行为和稳定性。首先,利用现场监测和数值模拟研究了GAC铺装过程中钢桥的温度分布。其次,计算了GAC摊铺过程中OSBD的温度应力和变形。第三,研究了OSBD温度变形对路面不平度的影响。最后,使用子模型和特征屈曲分析方法评估GAC摊铺过程中U筋的稳定性。结果表明,在GAC铺装过程中,钢桥面发生了隆起和膨胀变形,这种变形可能会导致铺装厚度分布不均匀。摊铺过程中的温度负荷可能会降低摊铺区域中U型筋的极限承载力,并且存在GAC摊铺过程中OSBD不稳定的隐患。 (C)2017年美国土木工程师学会。

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