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Investigation of the Flow Characteristics of Methane Hydrate Slurries with Low Flow Rates

机译:低流速甲烷水合物浆液的流动特性研究

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Gas hydrate blockage in pipelines during offshore production becomes a major problem with increasing water depth. In this work, a series of experiments on gas hydrate formation in a flow loop was performed with low flow rates of 0.33, 0.66, and 0.88 m/s; the effects of the initial subcooling, flow rate, pressure, and morphology were investigated for methane hydrate formation in the flow loop. The results indicate that the differential pressure drop (Δ P ) across two ends of the horizontal straight pipe increases with increasing hydrate concentration at the early stage of gas hydrate formation. When the flow rates of hydrate fluid are low, the higher the subcooling is, the faster the transition of the hydrates macrostructures. Gas hydrates can agglomerate, and sludge hydrates appear at subcoolings of 6.5 and 8.5 °C. The difference between the Δ P values at different flow rates is small, and there is no obvious influence of the flow rates on Δ P . Three hydrate macrostructures were observed: slurry-like, sludge-like, and their transition. When the initial pressure is 8.0 MPa, large methane hydrate blockages appear at the gas hydrate concentration of approximately 7%. Based on the gas–liquid two-phase flow model, a correlation between the gas hydrate concentration and the value of Δ P is also presented. These results can enrich the kinetic data of gas hydrate formation and agglomeration and provide guidance for oil and gas transportation in pipelines.
机译:随着水深的增加,海上生产过程中管道中的天然气水合物堵塞成为主要问题。在这项工作中,以0.33、0.66和0.88 m / s的低流速进行了一系列关于在流动回路中形成天然气水合物的实验。研究了初始过冷,流速,压力和形态对流回路中甲烷水合物形成的影响。结果表明,在天然气水合物形成初期,水平直管两端的压差下降(ΔP)随着水合物浓度的增加而增加。当水合物流体的流速低时,过冷度越高,水合物宏观结构的转变就越快。气体水合物可能会聚结,污泥水合物会在6.5和8.5°C过冷时出现。不同流量下的ΔP值之间的差异很小,并且流量对ΔP没有明显影响。观察到三个水合物宏观结构:浆状,污泥状及其过渡。当初始压力为8.0 MPa时,在大约7%的天然气水合物浓度下会出现较大的甲烷水合物堵塞。基于气液两相流模型,还提出了天然气水合物浓度与ΔP值之间的相关性。这些结果可以丰富天然气水合物形成和团聚的动力学数据,并为油气在管道中的输送提供指导。

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