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Kinetic Hydrate Inhibition Performance of MEG in Under-inhibition System: Reduction Opportunities of MEG Injection for Offshore Gas Fields Developments

机译:MEG在抑制系统中的动力学水合物抑制性能:近海天然气田的MEG注射的减少机会

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In offshore gas field development,mono-ethylene glycol(MEG)has been a robust choice for hydrate inhibition in subsea pro- duction systems and flowlines.Once hydrate blockage forms,considerable efforts and loss of production are inevitable to re- mediate the hydrate blockage.Therefore,the industry has been relying on the injection of considerable amount of MEG which is used to be over-estimated based on the worst operation condition:shut-in pressure,sea water temperature,and maximum water cut.However,during steady-state operation,the range of operation condition might be different from the worst condi- tion and for shut-in condition;the sufficient cool down time for hydrate formation could be guaranteed with appropriate insu- lation.More thorough analysis is required using the multiphase flow simulator.Furthermore,recent studies suggest that MEG may have kinetic hydrate inhibition(KHI)performance.An under-inhibited system where an insufficient amount of THI is present might be possible to avoid hydrate blockage issues and to reduce the operating cost for the injection of large amount of MEG.In this work,the evaluation of under-inhibited system is carried out to identify the possibility of hydrate blockage for- mation using multiphase flow simulation tool,OLGA,and accompanying hydrate kinetics experiments.The temperature and pressure profiles along with the liquid holdup are estimated during the steady-state and transient operation of offshore gas fields.The optimized concentration of MEG is calculated form the simulation results.Then the under-inhibition concept is evaluated from hydrate kinetics experiments to investigate possible reduction of MEG injection rate.The obtained results sug- gest that at least 30%of MEG injection can be reduced using the kinetic inhibition performance of MEG in under-inhibited system,which in turn increase economic feasibility of offshore gas fields.More advanced strategy to manage hydrate blockage in offshore field developments would be developed based on the optimization of the injection rate in under-inhibited system.
机译:在海上天然气场发育中,单乙二醇(MEG)是水合物抑制在海底生产系统和流动线上的稳健选择。液体堵塞形式,相当大的努力和生产损失是不可避免的,以便重新调解水合物堵塞因此,该行业一直依赖于注射相当数量的MEG,用于基于最差的操作条件超额估计:关闭压力,海水温和最大水切割。然而,在稳定期间。状态操作,操作条件范围可能与最差的条件和关闭条件不同;可以通过适当的预防,保证水合物形成的足够冷却时间。使用多相流来需要彻底分析。模拟器。最近的研究表明,MEG可能具有动力学水合物抑制(khi)性能。可能可能存在量不足的抑制系统为避免水合堵塞问题并降低注射大量MEG的运营成本。在这项工作中,对禁止抑制系统的评估进行了使用多相流动模拟工具来确定水合物堵塞的可能性,奥尔加和伴随水合物动力学实验。在近海气田的稳态和瞬态操作期间估计温度和压力曲线以及液体叠加。计算梅格的优化浓度形成模拟结果。该抑制率从水合物动力学实验评估了概念,以研究可能的MEG注射率的可能降低。获得的结果可以使用MEG的抑制系统的动力学抑制性能来降低至少30%的MEG注射,这反过来增加海上天然气田的经济可行性。在海上现场发展中管理水合物堵塞的先进战略将为b e基于在禁止抑制系统中的注射速率的优化开发。

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