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Design for Shear in Curved Composite Multiple Steel Box Girder Bridges

机译:曲线复合钢箱梁桥的剪力设计

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摘要

Modern highway bridges are often subject to tight geometric restrictions and, in many cases, must be built in curved alignment. These bridges may have a cross section in the form of a multiple steel box girder composite with a concrete deck slab. This type of cross section is one of the most suitable for resisting the torsional, distortional, and warping effects induced by the bridge's curvature. Current design practice in North America does not specifically deal with shear distribution in horizontally curved composite multiple steel box girder bridges. In this paper an extensive parametric study, using an experimentally calibrated finite-element model, is presented, in which simply supported straight and curved prototype bridges are analyzed to determine their shear distribution characteristics under dead load and under AASHTO live loadings. The parameters considered in this study are span length, number of steel boxes, number of traffic lanes, bridge aspect ratio, degree of curvature, and number and stiffness of cross bracings and of top-chord systems. Results from tests on five box girder bridge models verify the finite-element model. Based on the results from the parametric study simple empirical formulas for maximum shears (reactions) are developed that are suitable for the design office. A comparison is made with AASHTO and CHBDC formulas for straight bridges. An illustrative example of the design is presented. Keywrods bridges; box girder; bridges; composite; finite element method; bridge design; shear distribution; Bridges; steel
机译:现代的公路桥梁经常受到严格的几何约束,在许多情况下,必须以曲线形式建造。这些桥梁的横截面可以是具有混凝土甲板板的复合钢箱梁的形式。这种类型的横截面是最适合抵抗桥的曲率所引起的扭转,变形和翘曲影响的一种。北美当前的设计实践并未专门处理水平弯曲的复合钢箱梁桥的剪力分布。在本文中,使用实验校准的有限元模型进行了广泛的参数研究,其中分析了简单支撑的直形和弯曲原型桥梁,以确定其在恒载和AASHTO活载下的剪切分布特性。在这项研究中考虑的参数是跨度长度,钢箱数量,行车道数量,桥梁纵横比,曲率以及横撑和顶弦系统的数量和刚度。对五个箱形梁桥模型的测试结果验证了有限元模型。根据参数研究的结果,开发了适用于设计部门的简单的最大剪切(反应)经验公式。使用AASHTO和CHBDC公式对直桥进行了比较。给出了设计的说明性示例。钥匙桥;箱形梁桥梁综合;有限元法桥梁设计;剪切分布桥梁;钢

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