Study on the Correlation Between the Hydrate Formation-Blockage Risk and Gas-Liquid Flow Pattern in Horizontal Pipelines

Wenyuan Liu, Jinqiu Hu, Fengrui Sun, Zheng Sun, Xiangfang Li
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Abstract

Hydrate formation and blockage in pipelines are serious problems in the oil-gas production and transportation. The current research is limited to the prediction of pipeline hydrate formation. However, the small hydrate generation often does not form obvious pipeline flow-barriers. Therefore, compared with hydrate formation, hydrate growth rate and deposition rate is equally important for the emergence of flow barriers. Based on the hydrate formation-growth-deposition mechanism and combined with the hydrate experiment in the flowloop, the characteristics of hydrate formation-growth-deposition in pipelines under different gas-liquid flow patterns was studied. The results show: Different flow patterns show different hydrate formation and deposition characteristics due to different phase distribution and interface distribution. The bubble flow, cluster flow and slug flow have some similarities in flow patterns. It can be seen that the gas phase in the flow system exists in the form of bubbles, and the occurrence of thin liquid film on the tube wall under these three flow patterns is relatively rare; accordingly, the similarity of laminar flow, wave flow and annular-mist flow shows that thin liquid film or gas-liquid-pipe wall three-phase interface will always appear in the flow process, which will make the hydrate formation and deposition risk of the latter three flow patterns significantly greater than the former three flow patterns. Comprehensive analysis shows that the hydrate risk of each flow pattern is in the order of annular-mist flow > laminar flow and wave flow > slug flow > cluster flow and bubble flow. The annular-mist flow is the most dangerous flow pattern for hydrate formation and blockage, which is quite common in the oil and gas industry. In this case, special attention should be paid to hydrate prevention and control. It is hoped that the research in this paper can provide some theoretical guidance for field construction and related researchers.
水平管道水合物成堵风险与气液流态的相关性研究
水合物的形成和管道堵塞是油气生产和运输中存在的严重问题。目前的研究仅限于管道水合物的预测。然而,小水合物生成往往不形成明显的管道流动障碍。因此,与水合物形成相比,水合物生长速率和沉积速率对流动障碍的出现同样重要。基于水合物形成-生长-沉积机理,结合流环中的水合物实验,研究了不同气液流动方式下管道中水合物形成-生长-沉积特征。结果表明:由于相分布和界面分布的不同,不同的流动模式表现出不同的水合物形成和沉积特征。泡流、簇流和段塞流在流型上有一些相似之处。可以看出,流动系统中的气相以气泡的形式存在,在这三种流型下,管壁上出现薄液膜的情况比较少见;因此,层流、波流和环雾流的相似性表明,在流动过程中总会出现薄液膜或气液管壁三相界面,这将使得后三种流型的水合物形成和沉积风险明显大于前三种流型。综合分析表明,各流型的水合物风险大小为环雾流>层流和波浪流>段塞流>簇状流和泡状流。环雾流是油气工业中常见的水合物形成和堵塞最危险的流型。在这种情况下,应特别注意水合物的防治。希望本文的研究能够为现场建设和相关研究者提供一定的理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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