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Experimental Full Scale Tests on Shallow Buried Pipes under Live Load Conditions

机译:在现场负荷条件下浅埋管道上的实验性满规测试

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Shallowly buried pipes are used as culverts crossing under roads and railways, and for pipelines along main roads. To investigate the load distribution on shallow buried pipes and develop recommendations for their design a research project was funded by the Ministry of the Environment in the state of North-Rhine Westfalia, Germany. The research program consisted of experimental full-scale tests in a large testing facility (6 m×6 m×l5 m) at Institute for Underground Infrastructure (IKT), finite element analyses (FEA), and the verification of the loading approaches and calculation schemes used in current German standards. During the experiments various pipe materials were used including concrete, ductile iron, and polyethylene. The main goals were to determine: the vertical and horizontal earth pressure; the stress distribution induced by vehicle loads; the influence of wheel positions and load configuration; the influence of the pavement type; and, the general behavior of the pipe-soil system under impact loads. The main results are as follows: for shallowly buried pipes, the pipe crown is the zone of critical stresses. Soil stresses in tests were similar for the concrete pipe, but lower for flexible pipes when compared with theoretical approaches. Pipe deflections were lower than expected. A time dependent increase of pipe stresses was observed. The pavement type is of significant influence for the pipe stresses. The longitudinal behavior under live loads depends on the pipe type. Soil stresses increase under cyclic loading. The pure Boussinesq approach has been modified in the German code for structural calculation. A load distribution model has been developed instead to consider the supporting behavior of the side fill.
机译:浅埋管道被用作道路和铁路下的涵洞,以及沿着主要道路的管道。探讨浅埋管道上的负载分布,并为其设计制定建议,研究项目由德国北莱茵斯特州威斯特州的环境部资助。该研究计划由地下基础设施(IKT),有限元分析(FEA)的大型测试设施(6米×6米×L5 M)中的实验全规模测试包括,有限元分析(FEA)以及验证加载方法和计算目前德国标准中使用的方案。在实验期间,使用各种管材包括混凝土,韧性铁和聚乙烯。主要目标是确定:垂直和水平的地球压力;车载荷载引起的应力分布;车轮位置和负载配置的影响;路面型的影响;而且,管道系统在冲击载荷下的一般行为。主要结果如下:对于浅埋管道,管冠是临界应力区域。与理论方法相比,混凝土管的测试中的土壤胁迫与混凝土管相似,但柔性管较低。管道偏转低于预期。观察到管应力的时间依赖性增加。路面类型对管应力影响显着。活载下的纵向行为取决于管道类型。土壤胁迫在循环载荷下增加。纯BoussinesQ方法已在德国代码中进行了修改,用于结构计算。已经开发了一种负载分布模型,以考虑侧面填充的支撑行为。

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