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Investigation into THF hydrate slurry flow behaviour and inhibition by an anti-agglomerant

机译:研究THF水合物浆液的流动行为和抗结块剂的抑制作用

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Hydrate plugs are one of the highest risks for gas and oil transportation in pipelines, especially in deep sea environments. In a newly built-up loop, pilot-scale experiments were carried out to study typical hydrate plug phenomena and to explore the specific reasons behind these. A tetrahydrofuran (THF) hydrate slurry was formed and investigated in this loop fluid at two liquid loadings (50 vol% and 100 vol%) with/without a typical anti-agglomerant, KL-1. Morphology and temperature variations revealed that THF hydrate slurry evolution had four stages: (a) flowable fluid; (b) particle formation; (c) agglomeration; and (d) plug. The effect of liquid loading (LL) and an anti-agglomerant (AA) on morphology and temperature in three cases were studied. The morphologies in each stage were compared for the three cases. Hydrate conversion was calculated according to the liquid and solid volume proportion in these morphologies. From these morphologies, heterogeneous hydrate deposition was found to be more likely to happen in 50 vol% than in the 100 vol% LL system. The hydrate plug was also found to be induced by hydrate deposition rather than the bed at the bottom of the pipeline. By dispersing hydrate particle agglomeration, AA compressed hydrate deposition and the plug.
机译:水合塞是管道中天然气和石油运输的最高风险之一,特别是在深海环境中。在一个新建立的环路中,进行了中试规模的研究,以研究典型的水合物堵塞现象并探究这些现象背后的具体原因。形成四氢呋喃(THF)水合物浆液,并在有/没有典型抗结块剂KL-1的两种液体负载量(50%(体积)和100%(体积))下,对该回路流体进行研究。形态和温度变化表明,THF水合物浆液的析出有四个阶段:(a)可流动的流体; (b)颗粒形成; (c)集聚;和(d)塞子。研究了三种情况下液体负载量(LL)和抗结块剂(AA)对形貌和温度的影响。比较了三种情况下每个阶段的形态。根据这些形态中液体和固体的体积比例计算水合物转化率。根据这些形态,发现与50%(体积)的LL系统相比,50%(体积)的异质水合物沉积更有可能发生。还发现水合物堵塞是由水合物沉积而不是管道底部的床层引起的。通过分散水合物颗粒的团聚,AA压缩了水合物的沉积和堵塞。

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