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Laboratory Study on the Behavior of a Horizontal-Ellipse Culvert during Service and Ultimate Load Testing

机译:服役和极限载荷测试中水平椭圆涵洞行为的室内研究

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Horizontal-ellipse culverts have been used for many years as a substitute for more conventional short-span bridges; however, their performance has never been evaluated experimentally. This paper describes an experimental program to understand the behavior of a horizontal-ellipse culvert during backfilling, when subjected to simulated service loading at the ground surface, and during an ultimate limit states test. The backfill response of the specimen was similar to circular culverts except that, as expected, the specimen exhibited lower vertical stiffness than horizontal stiffness due to its shape. Contrary to current design conventions, the response of the culvert to surface loading was influenced by the cover depth. At 0.9 m of cover, the load-carrying mechanism was ring compression, whereas at 0.45 m, significant bending stresses developed in the top of the pipe. At 0.45 m of cover, the ultimate capacity of the culvert was measured as a tandem axle load of 1,324kN. Although this is approximately twice the fully factored design load, the culvert failed after the development of a plastic hinge mechanism instead of the wall compression considered in American and Canadian design codes, although the structure still had reserve capacity. (C) 2016 American Society of Civil Engineers.
机译:多年以来,水平椭圆形涵洞已被用来替代更常规的短跨度桥梁。但是,它们的性能从未经过实验评估。本文介绍了一个实验程序,该程序可以了解回填过程中水平椭圆涵洞的行为,在地面上承受模拟服务载荷时以及在极限状态测试中的行为。样品的回填响应与圆形涵洞相似,不同之处在于,由于形状的原因,样品的垂直刚度比水平刚度低。与当前的设计惯例相反,涵洞对表面荷载的响应受覆盖深度的影响。在0.9 m的覆盖层处,承载机制为环向压缩,而在0.45 m处,管道顶部会产生明显的弯曲应力。在0.45 m的覆盖层上,涵洞的极限承载力为1,324kN的串联轴重。尽管这大约是完全分解设计载荷的两倍,但涵洞在开发塑料铰链机构后失效,而不是美国和加拿大设计规范中考虑的壁压缩,尽管该结构仍具有储备能力。 (C)2016年美国土木工程师学会。

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