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JUSTIFICATION OF A NOVEL PIPE IN TUNNEL APPROACH TO A RIVER CROSSING

机译:穿越河道的隧道中新管道的合理性

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As part of a major pipeline construction project, Laing O'Rourke had a requirement to install a section of pipeline beneath a river estuary. Due to a number of reasons it was not possible to negotiate the crossing using conventional techniques such as horizontal directional drilling (HDD) and an alternate method had to be sought. A feasibility study was undertaken and it was decided that a pipe-in-tunnel approach was the most viable. Due to constraints at the points of entry and exit it was necessary to cut two vertical shafts, one on each river bank.rnLinepipe sections were to be welded together, in the entry shaft, and pulled through the 2.44m diameter tunnel on plastic rollers, which were later to become the permanent supports during operation. On completion of the installation within the tunnel, two vertical sections of pipeline were to be installed in the shafts for connection to the main pipeline system. Due to the length of the crossing it was decided that back filling the void between the pipe and the tunnel wall with a suitable grout was not viable. A particular consideration was the likely occurrence of voids which would reduce the effectiveness of the CP system. For this reason, following installation, the tunnel was to be sealed with a concrete plug and flooded with water, and the shafts are to be backfilled with soil.rnThis unique design arrangement presented a number of challenges and hence a requirement for the use of more complex modelling techniques than would normally be required.rnModels of the pipeline in various stages of installation were produced using the finite element software ABAQUS, with a variety of element types. Sets of rollers and their contact with the linepipe were also modelled. Soil loading, pressure, weight, buoyancy and temperature were applied to simulate a range of construction, commissioning and operational conditions. These were analysed, and the results were assessed for compliance with appropriate standards.rnBased on the results of the study it was possible to show that with a number of modifications to the original proposed design configuration, the crossing would be fit-for-purpose.
机译:作为大型管道建设项目的一部分,Laing O'Rourke要求在河口下安装一段管道。由于多种原因,不可能使用常规技术(例如水平定向钻探(HDD))来协商交汇,因此必须寻求一种替代方法。进行了可行性研究,并确定最可行的方法是采用管道隧道法。由于进出点的限制,必须切掉两根竖井,每条河岸一根。竖管段应在进水井中焊接在一起,并拉过直径为2.44m的塑料滚筒上的隧道,后来成为手术过程中的永久支撑。隧道内的安装完成后,将在竖井中安装管道的两个垂直部分,以连接到主管道系统。由于交叉的长度,决定用合适的水泥浆回填管道和隧道壁之间的空隙是不可行的。需要特别考虑的是可能会出现空隙,这会降低CP系统的效率。因此,在安装之后,隧道要用混凝土塞密封并用水淹没,竖井也要回填土。这种独特的设计方案带来了许多挑战,因此需要使用更多的管道。使用有限元软件ABAQUS生成了具有各种元素类型的管道的各个安装阶段的模型。还对滚筒组及其与管道的接触进行了建模。应用土壤负荷,压力,重量,浮力和温度来模拟一系列施工,调试和运行条件。分析这些结果,并评估结果是否符合适当的标准。基于研究结果,有可能表明,对原始提议的设计配置进行多种修改后,交叉点将是适合目的的。

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