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Load distribution for composite steel-concrete horizontally curved box girder bridge

机译:钢-混凝土组合水平弯箱梁桥的荷载分布

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A comprehensive numerical investigation is carried out to assess the load distribution mechanism of horizontally curved steel concrete composite box girder bridges when subjected to loading recommended by Australian Bridge Design Code and American Association of State Highway and Transportation Officials (AASHTO). In this investigation, the effect of various parameters such as curvature ratio, span length, number of loading lanes and number of cells is considered. In addition, a convergence study is carried out to identify the appropriate bracing system so as to retain the maximum torsional rigidity of these structures. The numerical model is first validated with actual test results so that they can be adopted for an extensive parametric study with good confidence. The results obtained from the parametric study are used to determine load distribution factors for moment and shear of horizontally curved box girder bridges. It is observed that these load distribution factors according to AASHTO loads are considerably higher than those obtained from the loading recommended by Australian Bridge Design Code. Hence, it is not reasonable to use load distribution factor based on AASHTO loading guidelines for the design of these curved bridges subjected to Australian Bridge Design loading. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了全面的数值研究,以评估水平弯曲的钢混凝土组合箱梁桥在承受澳大利亚桥梁设计规范和美国国家公路和运输官员协会(AASHTO)推荐的荷载时的荷载分布机理。在这项研究中,考虑了各种参数的影响,例如曲率比,跨度长度,装载车道数量和单元数量。此外,还进行了收敛研究,以确定合适的支撑系统,以保持这些结构的最大扭转刚度。数值模型首先通过实际测试结果进行验证,因此可以放心地将其用于广泛的参数研究。从参数研究中获得的结果用于确定水平弯曲箱形梁桥弯矩和剪力的荷载分布因子。可以看出,根据AASHTO荷载计算的这些荷载分配系数明显高于根据《澳大利亚桥梁设计规范》建议的荷载获得的荷载分配系数。因此,将基于AASHTO荷载准则的荷载分配系数用于承受澳大利亚桥梁设计荷载的这些弯曲桥梁的设计是不合理的。 (C)2015 Elsevier Ltd.保留所有权利。

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