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Multiphase flow behavior in deep water drilling: The influence of gas hydrate

机译:深水钻井中的多相流动行为:天然气水合物的影响

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Hydrate phase transition may bring hidden dangers for well control safety, even accidents of blowout happen in deep water drilling. Accurate calculation of all the drilling parameters is of great importance for well control safety. In this study, the mathematic models of transient heat transfer and multiphase flow have been established with the consideration of hydrate phase transition. Furthermore, the position where hydrate formation is most likely to occur was predicted with the proposed models, and the factors affecting hydrate formation region were also analyzed. Finally, the analysis of the effect of gas hydrate phase transition on some important parameters in well control, such as the pit gain, gas void fraction, and bottom hole pressure, is presented. The results show that hydrates form near the mud line during the drilling and shut‐in stage, but the hydrate formation region will be narrowed as well killing start. Additionally, the hydrate formation region decreased with the increase of flow rate and increased with the increasing shut‐in time, hydrate inhibitors, and riser insulation are presented to prevent hydrate blockage. More importantly, the gas void fraction and pit gain decrease due to the formation of hydrates, leading to the gas kick early detection not timely and gas kick more “hidden.”
机译:水合物相转变可能会带来良好控制安全的隐患,即使在深水钻探中也会发生井喷事故。对所有钻井参数的精确计算对于良好的控制安全性非常重要。在这项研究中,通过考虑水合物相转变来确定瞬态传热和多相流的数学模型。此外,利用所提出的模型预测了水合物形成最有可能发生水合物的位置,并分析了影响水合物形成区域的因素。最后,提出了对井控制中一些重要参数的气体水合物相变的影响,例如凹坑增益,气体空隙分数和底部孔压力。结果表明,在钻井和关闭阶段,泥浆线附近的水合物形式,但在杀死开始时,水合物形成区域将变窄。另外,水合物形成区域随着流速的增加而降低,并随着依然的连续时间,水合物抑制剂和提升管绝缘而增加以防止水合物阻断。更重要的是,由于水合物的形成,气体空隙部分和坑增益降低,​​导致气体急促检测不及时,气体踢得更“隐藏”。

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