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STUDY OF SLUG CONTROL TECHNIQUES IN PIPELINE SYSTEMS

机译:管道系统中的堵头控制技术研究

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Severe slugging may occur at low flow rate conditions when a downward inclined pipeline is followed by a vertical riser. This phenomenon is undesirable for offshore oil and gas production due to large pressure and flow rate fluctuations. It is of great technological relevance to develop reliable and economical means of severe slugging mitigation. This study aims to develop an automated control system to detect and mitigate the formation of severe slugging through a choke valve and a series of sensors. As a first step, an overall flow map is generated to indicate the region within which severe slugging may occur based on Boe's criterion and Taitel's model. It was possible to obtain different flow patterns by controlling the rate of water and gas injection. The aim of this paper is, however, the formation of severe slugs and study of mitigation techniques. In the control part, we used a choke valve controlled by software which is in feedback with data from a system with pressure, temperature, flow, which are able to measure even small changes in the relevant parameters to the model. A two-phase flow loop was built for the study of severe slugging in pipeline-riser system with air and water as work fluids. The inner diameter of riser and flowline is 76.2 mm. The riser is 20 meters high and the flowline is 15 meters long and could be inclined upward or downward up to 8-degree. It has been shown by experiments how riser slugging can be controlled by automated control system.
机译:当向下倾斜的管道后接竖直立管时,在低流量条件下可能会发生严重的击打。由于大的压力和流量波动,这种现象对于海上油气生产是不希望的。开发可靠且经济的减轻重击的手段具有重大的技术意义。这项研究的目的是开发一种自动控制系统,以通过节流阀和一系列传感器来检测和减轻严重塞子的形成。第一步,根据Boe准则和Taitel模型,生成总体流程图以指示可能发生严重击打的区域。通过控制水和气体的注入速度,可以获得不同的流动模式。但是,本文的目的是形成严重的弹头并研究缓解技术。在控制部分,我们使用了由软件控制的节流阀,该节流阀从压力,温度,流量系统的数据中获得反馈,这些数据能够测量模型相关参数的微小变化。建立了一个两相流回路,用于研究以空气和水为工作流体的管道冒口系统中的重击。立管和出油管的内径为76.2毫米。立管高20米,出油管长15米,可以向上或向下倾斜直至8度。实验表明,如何通过自动控制系统控制立管的塞子。

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