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Response analysis of an aerial-crossing gas-transmission pipeline during pigging operations

机译:流运过程中空中燃气传输管道的响应分析

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摘要

Pigging operations of natural gas transmission pipelines for cleaning, swabbing and batching inhibition become a regular industry procedure, and that could help to maintain the integrity and optimum efficiency of the pipeline and safeguard both the environment and the assets of the pipeline owner. However, unreasonable controls of pigging parameters including pressure, pig speed, period, etc. may induce harmful vibrations or even structural damage, especially for the aerial crossing segment. In this paper, a dynamic model capable of describing flow characteristics of accumulations driven by pigs and fluid-structure interactions involving fluid pressure, centrifugal force and Coriolis force is established to investigate dynamic behaviors of an aerial crossing pipe during pigging operations. The motion equation is solved using finite element method. Experimental results are used to validate the motion equation of pipes conveying two-phase flow. A lot of numerical simulations of dynamic responses under different boundary conditions and operating parameters are performed, and some interesting and sometimes unexpected results are shown. Finally, the effects of boundary conditions and operating parameters on dynamic characteristics are discussed. This study is helpful for controlling harmful vibration responses of natural gas pipeline under pigging operations and promoting the safety of pigging procedures.
机译:用于清洁,擦除和批量抑制的天然气传输管道的流量成为常规行业程序,这有助于维持管道的完整性和最佳效率,并保障管道所有者的环境和资产。然而,在包括压力,猪速度,时期等的流入参数的不合理控制可能会引起有害的振动甚至结构损坏,特别是对于空中交叉部分。在本文中,建立了一种能够描述由猪和涉及流体压力,离心力和科里奥利力的流体结构相互作用的流动特性的动态模型,以研究在流动期间的空中交叉管的动态行为。使用有限元方法解决运动方程。实验结果用于验证输送两相流的管道运动方程。执行在不同边界条件下的许多动态响应的数值模拟,并且显示了一些有趣的,有时意外的结果。最后,讨论了边界条件和操作参数对动态特性的影响。本研究有助于控制流量下的天然气管道的有害振动响应,促进流动手术的安全性。

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