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Numerical Study of Restrained Joint and Pulling Load for Ductile Iron Pipe in Horizontal Directional Drilling

机译:水平定向钻井中球墨铸铁管约束节理和拉力的数值研究

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As an alternative pipe material, ductile iron pipe (DIP) has been more and more widely used in horizontal directional drilling (HDD) because of its excellent mechanical performance and corrosion resistance. The limited capacity of restrained joints to withstand pulling force severely constrains their application in long-distance crossing projects. The finite-element method (FEM) was used to study the mechanism of joint failure as well as the effect of slope angle, based upon which an approximate solution was developed to estimate the maximum pull capacity of joints. The authors found that joint failure started from the spigot and an appropriate increase of slope angle could improve the maximum pull capacity of joints. Considering pipe angular deflection, a new pullback load estimation model was established and its accuracy was verified by a HDD river crossing project. (c) 2018 American Society of Civil Engineers.
机译:球墨铸铁管(DIP)作为一种替代管道材料,因其出色的机械性能和耐腐蚀性而被越来越广泛地用于水平定向钻井(HDD)。受约束的关节承受拉力的能力有限,严重限制了它们在长距离穿越工程中的应用。使用有限元方法(FEM)研究了节点破坏的机理以及倾斜角度的影响,在此基础上,开发了一种近似解来估计节点的最大拉力。作者发现,接头失效始于套管,适当增加倾斜角度可以提高接头的最大拉力。考虑到管道的角挠度,建立了新的拉力负荷估算模型,并通过HDD河道穿越工程对其准确性进行了验证。 (c)2018年美国土木工程师学会。

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