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Hydrate formation management simulations with anti-agglomerants and thermodynamic inhibitors in a subsea tieback

机译:海底回塞中使用抗结块剂和热力学抑制剂进行水合物形成管理模拟

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摘要

The rapid formation of gas hydrates in subsea tiebacks is regarded as one of the most challenging problems in flow assurance. Due to economic reasons, the hydrate controlling strategy has moved from hydrate avoidance to hydrate management. Efficient design of hydrate management techniques requires a better understanding of hydrate formation kinetics, as well as a robust transient hydrate simulation tool. In this work, we use a transient hydrate simulation tool with the ability of predicting hydrate formation in oil- and water-dominated systems simultaneously to capture complicated multiphase flow scenarios expected in oil and gas flowlines. This modeling tool can be applied to estimate hydrate formation in flowlines exhibiting both water- and oil-dominated environments at different locations, which is especially useful in modeling transient shut-in/restart operations as well as high water cut scenarios. This simulation tool can track the concentration of multiple thermodynamic inhibitors and consider the injection of anti-agglomerants through the cohesive force change between hydrate particles. This paper presents modeling results of a real black oil subsea tieback system, considering its geometry, production data and fluid properties. The hydrate formation rates and plugging risks at different water cuts, gasoil ratios and liquid holdups were estimated both during steady state operation and shut-in/restart conditions. A hydrate blockage formed in the real field at 49 vol% water cut was successfully predicted using the transient hydrate prediction model. This simulation tool can be applied to predict the hydrate formation rate and amount under the complicated multiphase flow scenarios in oil/gas fields, and could be useful for the design and optimization of hydrate management approaches in flowlines.
机译:在海底回输中快速形成天然气水合物被认为是流量保证中最具挑战性的问题之一。由于经济原因,水合物控制策略已从避免水合物转向了水合物管理。有效的水合物管理技术设计需要对水合物形成动力学有更好的了解,并需要强大的瞬态水合物模拟工具。在这项工作中,我们使用瞬态水合物模拟工具,该工具能够同时预测以油和水为主的系统中的水合物形成,以捕获油气管线中预期的复杂多相流情景。该建模工具可用于估算在不同位置同时表现出水和油为主的环境的流水线中的水合物形成,这在建模瞬态关闭/重启操作以及高含水率场景中特别有用。该模拟工具可以跟踪多种热力学抑制剂的浓度,并通过水合物颗粒之间的内聚力变化来考虑注入抗凝聚剂。本文介绍了一个真正的黑油海底回灌系统的建模结果,并考虑了其几何形状,生产数据和流体性质。在稳态运行和关断/重启条件下,都可以估算出不同含水率,瓦斯油比和液体滞留率下的水合物形成速率和堵塞风险。使用瞬态水合物预测模型成功地预测了含水量为49%(体积)时在实地形成的水合物堵塞。该仿真工具可用于预测复杂多相流场景下油气田中水合物的生成速率和数量,可用于设计和优化流水线中的水合物管理方法。

著录项

  • 来源
    《Fuel》 |2019年第15期|458-468|共11页
  • 作者单位

    Colorado Sch Mines Dept Chem & Biol Engn Ctr Hydrate Res 1600 Illinois St Golden CO 80401 USA;

    Multi Chem Deepwater & Flow Assurance Engn 3000 N Sam Houston Pkwy E Houston TX 77032 USA;

    Colorado Sch Mines Dept Chem & Biol Engn Ctr Hydrate Res 1600 Illinois St Golden CO 80401 USA|Colorado Sch Mines Dept Petr Engn 1600 Arapahoe St Golden CO 80401 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gas hydrates; Subsea tiebacks; Anti-agglomerant; Simulation; Flow assurance; Multiphase flow;

    机译:天然气水合物;海底回扣;抗结块;模拟;流量保证;多相流;

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