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首页> 外文期刊>The Open Petroleum Engineering Journal >Gas Hydrate Formation Phase Boundary Behaviour of Synthetic Natural Gas System of the Keta Basin of Ghana
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Gas Hydrate Formation Phase Boundary Behaviour of Synthetic Natural Gas System of the Keta Basin of Ghana

机译:加纳塔塔盆地合成天然气系统的天然气水合物形成相边界行为

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Background:Gas hydrates are considered as a major threat to the oil and gas flow assurance industry. At high pressure and low temperature conditions, gas hydrates form in pipelines and production facilities leading to pipeline blockages, high removal cost, environmental hazards and loss of lives. For a successful prevention of gas hydrate formation, predicting the hydrate formation phase boundary of hydrocarbon fluid composition becomes very necessary.Objective and Method:In this study, computer simulation software called PVTSim was used to predict hydrate formation phase boundary of synthetic natural gas composition of the Keta basin of Ghana at pressure and temperature ranges of 43.09 bar - 350 bar and 12.87 °C - 27.29 °C respectively. The effect of changes in natural gas composition (N2 and H2S) and the presence of four commonly used thermodynamic gas hydrate inhibitors (methanol, ethanol, diethylene glycol and monoethylene glycol) on the hydrate formation phase boundary is also discussed. Prior to the study, the accuracy of PVTSim was validated with the hydrate formation phase data in literature.Results and Conclusion:Results suggested that the hydrate formation phase boundary decreased with increasing N2 composition and increased with increasing H2S composition, suggesting that, the presence of H2S increases the threat of hydrate formation. However, a reduction in hydrate formation threat was observed in the presence of all four commonly used gas hydrate thermodynamic inhibitors with methanol demonstrating the highest inhibition effect.
机译:背景:天然气水合物被视为对油气流量保证行业的主要威胁。在高压和低温条件下,天然气水合物在管道和生产设施中形成,导致管道堵塞,高去除成本,环境危害和生命损失。为了成功地防止天然气水合物的形成,预测烃类流体成分的水合物形成相边界非常必要。目的与方法:本研究采用PVTSim计算机模拟软件来预测天然气合成水合物的水合物形成相边界。加纳Keta盆地的压力和温度范围分别为43.09 bar-350 bar和12.87°C-27.29°C。还讨论了天然气成分(N2和H2S)变化以及四种常用的热力学气体水合物抑制剂(甲醇,乙醇,二甘醇和单乙二醇)对水合物形成相界的影响。在研究之前,已利用文献中的水合物形成相数据验证了PVTSim的准确性。结果与结论:结果表明,水合物形成相界随N2组成的增加而减小,而随H2S组成的增加而增加,表明存在水合物。 H2S增加了水合物形成的威胁。然而,在所有四种常用的天然气水合物热力学抑制剂的存在下,观察到水合物形成威胁的减少,其中甲醇表现出最高的抑制作用。

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