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STRESS ANALYSIS OF A GAS PIPELINE INSTALLED USING HDD AND AUGER BORE TECHNIQUES

机译:使用HDD和Auger钻孔技术安装的天然气管道的应力分析

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As part of an important project to reinforce the natural gas transmission network, a new pipeline has been constructed to transport natural gas from a major UK LNG storage facility into the national transmission system.rnThe project involved the installation of several sections by trenchless methods, namely auger boring for a number of road crossings and significant lengths of horizontal directional drilling (HDD) beneath railroads, canals and marshland.rnThe installation of pipelines using trenchless techniques such as HDD continues to increase in popularity. The various methods available offer advantages over traditional open cut techniques, in particular much reduced disruption during the construction of road and rail crossings. Furthermore, increased awareness and responsibility towards the environment leads us to seek installation methods that cause the least disruption at the surface and have the least impact to the environment.rnIt was required to assess the proposed crossing designs against acceptable stress limits set out in company specifications and against the requirements of UK design code IGE/TD/1 Edition 4 [1], which requires that 'additional loads' such as soil loadings, thermal loads, settlement and traffic loading are accounted for within the stress calculations. However, it does not stipulate the sources of such equations and the pipeline engineer must rely on other methods and published sources of information.rnThis paper presents the method used to analyse those sections of the new pipeline installed by auger boring and HDD focusing on the methods and formulae used to calculate the stresses in the pipeline from all loading sources.
机译:作为加强天然气传输网络的重要项目的一部分,已修建一条新管道将天然气从英国的主要LNG储存设施传输到国家传输系统中。该项目涉及通过无挖沟方法安装多个部分,即在许多道路交叉口上进行钻探钻孔,以及在铁路,运河和沼泽地下方进行相当长的水平定向钻探(HDD)。使用诸如HDD之类的非开挖技术安装管道的情况持续增加。可用的各种方法提供了优于传统明挖技术的优势,尤其是在道路和铁路道口建设期间大大减少了干扰。此外,对环境的意识和责任感的增强使我们寻求安装方法,这些方法在地面上造成的干扰最少,对环境的影响也最小。rn需要根据公司规范中规定的可接受的应力极限来评估拟议的穿越设计并违反英国设计规范IGE / TD / 1第4版[1]的要求,该要求要求在应力计算中考虑“附加荷载”,例如土壤荷载,热荷载,沉降和交通荷载。但是,它并没有规定这些方程式的来源,管道工程师必须依靠其他方法和已公开的信息来源。本文介绍了用于分析螺旋钻和HDD安装的新管道的那些部分的方法,重点是这些方法以及用于计算来自所有载荷源的管道应力的公式。

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