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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Ground Displacements from a Pipe-Bursting Experiment in Well-Graded Sand and Gravel
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Ground Displacements from a Pipe-Bursting Experiment in Well-Graded Sand and Gravel

机译:渐变砂和砾石中爆破试验的地面位移

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摘要

Pipe bursting is a construction technique that involves the replacement of an existing buried pipe with potentially much less surface disturbance than traditional cut and cover construction. However, excessive ground movements associated with pipe-bursting operations may lead to damage to surrounding infrastructure. A static pipe-bursting experiment was performed in sand and gravel within an 8-m-long, 8-m-wide, and 3-m-deep test pit to quantify the ground displacements from pipe bursting. An existing unreinforced concrete pipe buried 1.385 m below the ground surface was replaced with a high-density polyethylene pipe. Pulling force and the three-dimensional nature of surface displacements associated with pipe bursting are examined. The 4-m wide surface response had a peak vertical displacement of 6 mm. In addition, transverse displacements of 1.2 mm resulted in the formation of a tension crack in the ground above the concrete pipe. This experiment offers data that improves the understanding of the mechanisms of ground disturbance, and provides unique experimental data for calibration of numerical models.
机译:爆管是一种建筑技术,涉及到替换现有的地下管道,其表面干扰可能比传统的切割和覆盖施工要少得多。但是,与爆管操作相关的过度地面移动可能会导致周围基础设施的损坏。在长8 m,宽8 m和深3 m的测试坑内的沙子和砾石中进行了静态管道爆破实验,以量化爆破引起的地面位移。埋在地下1.385 m以下的现有无钢筋混凝土管被高密度聚乙烯管代替。检查了拉力和与管爆裂有关的表面位移的三维性质。 4米宽的表面响应的垂直位移峰值为6毫米。另外,1.2mm的横向位移导致在混凝土管上方的地面中形成张力裂缝。该实验提供的数据可增进对地面干扰机理的理解,并提供用于数值模型校准的独特实验数据。

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