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Numerical Simulation of Pigging Operation through Curved Pipeline Coupling a T-Abrupt and Bend Drain Pipe

机译:通过弯曲管道耦合弯曲和弯曲排水管的数值模拟

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摘要

Pigging technology is currently widely used in the oil and gas industry. The unstable movement of the pig in the pigging process after a water pressure test will not only affect the operation of pipes, but may even cause them to burst. In this paper, a transient hydraulic model of the pigging process after a water pressure test is established in a two-grid system. The model combines the mass and motion equations of the gas and liquid and then is solved by the method of characteristics. The combined method of computational fluid dynamics (CFD) software simulation and a semiempirical formula is used to study the gas-liquid flow pressure drop characteristics of T-abrupt and bend drain pipe. It is applied to the pig tracker and hydraulic pulse prediction to obtain the pig's position and speed. Finally, the field data and the simulation results are basically consistent after comparison, which verifies that the established model is correct and the calculation results are reliable. Hence, we can provide a reliable and effective theoretical basis for the on-site pigging scheme.
机译:流化技术目前广泛用于石油和天然气行业。猪在水压试验后猪在流动过程中的不稳定运动不仅会影响管道的运行,而且可能导致它们爆裂。在本文中,在双栅系统中建立了水压试验后的流动过程的瞬态水力模型。该模型结合了气体和液体的质量和运动方程,然后通过特性方法解决。计算流体动力学(CFD)软件模拟的组合方法和半级公式用于研究T型突然和弯曲排水管的气液流量压降特性。它适用于猪跟踪器和液压脉冲预测,以获得猪的位置和速度。最后,场数据和仿真结果基本上是一致的,在比较之后,验证了建立的模型是正确的,并且计算结果是可靠的。因此,我们可以为现场汇集方案提供可靠和有效的理论基础。

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