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Study on the growth rate of natural gas hydrate in water-in-oil emulsion system using a high-pressure flow loop

机译:利用高压流回路研究油包水乳液体系中天然气水合物的增长率

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Hydrate slurry transport technology in deep-water pipelines has become a focal point among worldwide researches, due to its high economic efficiency. However, as the key part of the hydrate slurry transport technology research, the mechanism and laws of natural gas hydrate growth dynamics are still unclear in the flow emulsion system. On this basis, we have conducted a series of growth kinetic experiments in a high-pressure loop, investigated systematically several influencing factors ( i.e. the flow rate, water-cut, AA concentration and so on) of growth kinetics, obtained the quantitative relations between these factors and the gas consumption as well as the hydrate growth rate (gas consumption rate). It could be gained from analysis of these influencing factors, that the hydrate growth rate has an extreme value (maximum) during the formation process in a slurry system. The controlling factor of hydrate formation differed at the stages before and after this maximum value. The intrinsic kinetics controlled before the value while heat/mass transfer influenced after it. The time needed for the hydrate growth rate to reach the maximum point was generally within 0.5 h after the hydrate mass formation.
机译:由于其高经济效率,深水管道中的水合物淤浆运输技术已成为全球研究的重点。然而,作为水合物淤浆输送技术研究的关键部分,在流动乳液体系中,天然气水合物生长动力学的机理和规律尚不清楚。在此基础上,我们在高压回路中进行了一系列的生长动力学实验,系统地研究了几个影响生长动力学的因素(即流量,含水率,AA浓度等),得到了两者之间的定量关系。这些因素与气体消耗量以及水合物的增长率(气体消耗率)有关。从这些影响因素的分析中可以得出,在浆液系统的形成过程中,水合物的生长速率具有极值(最大值)。水合物形成的控制因素在该最大值之前和之后的阶段有所不同。在该值之前受控制的内在动力学,而在其后受热/质量传递影响。水合物生长速率达到最大值所需的时间通常在水合物团块形成后0.5小时内。

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