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AN ANALYSIS OF THE STRESSES INCURRED IN PIPE DURING LAYING OPERATIONS

机译:铺设过程中管道产生的应力分析

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It is common practice during the construction of underground pipelines that pipe sections are welded together at surface level and then lowered into a pre-dug trench. Lowering of the pipeline into the trench incurs bending and/or torsional stresses that are not typically considered during the design of the pipeline. Current industry guidelines recommend the pipelines be lowered into the trenches with care in order to avoid cracking of the pipe, or yielding that could lead to residual stresses and distortion. There are currently no formal guidelines on how to minimize these stresses, or estimates of the magnitude of stresses associated with these operations.rnThe stresses incurred during the laying of pipe can be estimated using simple beam bending and torsion equations. One can simplify the analysis by assuming the pipeline is either a cantilever with a given load or deflection at one end, or, a beam with given loads, deflections and rotations at both ends. The choice of boundary conditions influences the calculated stresses, and can be considered appropriate for different pipe laying operations. If a pipeline is moved laterally during the laying operations one must consider the associated torsional stresses. The combination of bending and torsional stresses will lead to different stress states on different sides of the pipe, some of which may result in cracking or yielding.rnThe goal of this work is to develop a framework for estimating the stresses incurred in pipe during laying operations, as a function of pipe length, deflection, diameter and wall thickness. This will allow guidelines to be developed that will allow construction crews to ensure that pipelines are laid with minimal damage. A variety of analyses has been considered during the course of this work and is presented in this paper. It is expected that discussion of these analyses with industry representatives will lead to improved construction protocols.
机译:在地下管线的建造过程中,通常的做法是将管段在表面水平焊接在一起,然后放到预挖的沟槽中。将管道降低到沟槽中会引起弯曲和/或扭转应力,这在管道设计期间通常不会考虑。当前的行业准则建议小心地将管道降低到沟槽中,以避免管道破裂或屈服,这可能导致残留应力和变形。当前尚无有关如何最小化这些应力或与这些操作相关的应力大小估算的正式指南。可以使用简单的梁弯曲和扭转方程来估算管道铺设过程中产生的应力。通过假设管道是在一端具有给定载荷或挠度的悬臂,还是在两端具有给定载荷,挠度和旋转的梁,可以简化分析。边界条件的选择会影响计算得出的应力,可以认为适用于不同的管道铺设操作。如果管道在铺设过程中横向移动,则必须考虑相关的扭转应力。弯曲应力和扭转应力的组合将导致管道不同侧的应力状态不同,其中某些应力状态可能导致开裂或屈服。rn本工作的目的是建立一个框架,用于估算铺设过程中管道产生的应力。随管长,挠度,直径和壁厚的变化而变化。这将允许制定指导原则,使施工人员能够确保管线的铺设损失最小。在这项工作过程中已经考虑了各种分析,并在本文中进行了介绍。预期与行业代表讨论这些分析将导致改进的施工方案。

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