首页> 外文会议>Offshore Technology Conference >Dynamics of Hydrate Behavior in Shut-In and Restart Condition in Two and Three Phase System
【24h】

Dynamics of Hydrate Behavior in Shut-In and Restart Condition in Two and Three Phase System

机译:两三相系统中闭合条件水合物行为的动态

获取原文

摘要

The oil and gas production in deeper water scenarios (e.g. pre-salt) has been increasing due to the growth in industrial production. The exploration fields under more severe conditions is accompanied by concerns about solid precipitation/deposition and hydrate formation. Transient operations, involving shut-in and restart is the most challenging scenario with risk for hydrate problem. The residence time of the production fluids associated to the rate of heat loss to the ambient seabed during the period of shut-in may increase the potential risk of hydrate blockage. This work is focused on understanding the hydrate formation, breakup, agglomeration and deposition, reproducing the shut-in and restart conditions in a lab-scale. Experiments were performed using a high pressure cell coupled to a rheometer using a custom-designed impeller and a rocking cell experiments with visual capabilities. A two-phase (water and gas) and three-phase (water, oil and gas) systems were used in the experiments. Also, the impact of the shear applied at restart on the hydrate morphology was evaluated. The viscoelastic behavior was observed in most shut-in and restart tests. Understanding the mechanism of hydrate formation and agglomeration during transient conditions may help to develop strategies to avoid hydrate plugging and allow the formation of a hydrate slurry yielding flowable conditions.
机译:由于工业生产的增长,在更深的水景(例如,盐)中的石油和天然气生产一直在增加。在更严重的条件下的勘探场伴随着对固体沉淀/沉积和水合物形成的担忧。涉及关闭和重启的瞬态操作是具有水合物问题风险的最具挑战性的情景。在关闭期间,生产流体与热损失率相关的生产流体可能会增加水合物堵塞的潜在风险。这项工作的重点是了解水合物形成,分类,凝聚和沉积,在实验室规模中再现关入并重启条件。使用定制设计的叶轮和具有视觉能力的摇摆细胞实验,使用耦合到流变仪的高压电池进行实验。实验中使用了两阶段(水和气体)和三相(水,油气和气体)系统。而且,评估了在重新启动时施用的剪切对水合物形态的影响。在大多数关闭和重启测试中观察到粘弹性行为。了解水合物的形成和凝聚在瞬态条件的机制可以帮助制定战略,以避免水合物堵塞和允许水合物浆产生流动条件的形成。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号