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Investigation of natural gas hydrate slurry flow properties and flow patterns using a high pressure flow loop

机译:使用高压流回路研究天然气水合物浆液的流动特性和流动方式

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The formation and agglomeration of hydrates have been a major hazard to the operating safety of deep-sea oil/gas transportation pipeline. Although many studies have been conducted to investigate the hydrates formation and particle behaviors during the transportation, studies on the gas-slurry flow properties and effects of hydrates on multiphase flow patterns are still almost blank. In this work, a series of experiments were conducted in a high pressure flow loop, using the materials of a pseudo single liquid-phase (saturated water/oil emulsion) and a gas-liquid multiphase, respectively. It was found that hydrates agglomeration was more violent and the flow property was worse in the gas-liquid multiphase system. When hydrates formed in the gas-liquid multiphase system, the liquid flow rate would decrease in all experimental conditions while the gas flow rate showed three different changing types: decreasing, increasing or keeping constant. These changes of the flow rate would further induce a transition of the gas-liquid multiphase flow pattern in the loop. Based on the experimental data, two flow pattern maps were made. One involved the effects of hydrates while the other did not. Through the comparison between the two flow pattern maps, it is confirmed that the influence of hydrates on the flow pattern is significant. The differences between the two flow pattern maps were also analyzed using a flow pattern transition model to provide an insight into the mechanism of how hydrates affect the multiphase flow pattern. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水合物的形成和结块已成为深海油气输送管道运行安全的主要危害。尽管已经进行了许多研究来研究运输过程中水合物的形成和颗粒行为,但是关于气浆流动特性以及水合物对多相流型的影响的研究仍是空白。在这项工作中,分别使用假单液相(饱和水/油乳状液)和气液多相的材料,在高压流回路中进行了一系列实验。发现在气液多相系统中,水合物的团聚更剧烈,流动性更差。当在气液多相系统中形成水合物时,在所有实验条件下,液体流速都会降低,而气体流速则显示出三种不同的变化类型:降低,增加或保持恒定。流速的这些变化将进一步引起回路中气液多相流动模式的转变。根据实验数据,制作了两个流型图。一种涉及水合物的作用,而另一种则没有。通过比较两个流型图,可以确定水合物对流型的影响是显着的。还使用流动模式转换模型分析了两个流动模式图之间的差异,以深入了解水合物如何影响多相流动模式的机理。 (C)2016 Elsevier Ltd.保留所有权利。

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