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A new hydrate deposition prediction model considering hydrate shedding and decomposition in horizontal gas-dominated pipelines

机译:一种新的水合物沉积预测模型,其考虑水平气体主导管道水合物脱落和分解

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摘要

Hydrate formation and blockage in gas-dominated pipelines has always been an important issue in research of pipeline flow assurance. In this work, a novel hydrate deposition prediction model considering hydrate shedding and decomposition for gas-dominated pipeline is proposed and solved by the finite difference method and iterative technique. Finally, the model has been applied in the existing gas-dominated pipeline experiments. The results show that: (a) the predicted results are in good agreement with the experimental data, (b) when the maximum degree of pipeline blockage reaches the blockage limit, the hydrate layer will shear off, and the layer that has been sheared tends to fall off twice, (c) when the pressure is the same, the higher the negative subcooling (N-subcool-ing), the faster the hydrate decomposition rate, and when the N-subcool-ing is similar to the subcooling, the decomposition with the same hydrate volume is faster than the formation, (d) increasing the hydrate shedding amount or increasing the hydrate decomposition rate can be used to deal with hydrate deposition and blockage accidents in natural gas pipelines.
机译:天然气为主的管道中水合物的形成和堵塞一直是管道流量保证研究中的一个重要问题。本文提出了一种考虑水合物脱落和分解的天然气管道水合物沉积预测模型,并采用有限差分法和迭代法进行了求解。最后,将该模型应用于现有的以天然气为主的管道实验中。结果表明:(a)预测结果与实验数据吻合良好,(b)当管道最大堵塞程度达到堵塞极限时,水合物层会发生剪切,被剪切的水合物层有两次脱落的趋势,(c)压力相同时,负过冷度(N-过冷度)越高,水合物分解速度越快,当N-过冷与过冷相似时,相同水合物体积的分解速度比地层快,(d)增加水合物脱落量或增加水合物分解速率可用于处理天然气管道中的水合物沉积和堵塞事故。

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