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首页> 外文期刊>Interpretation >Hydrates on the subsea wellhead in deepwater wells: Study on the growth mechanisms, impacts on drilling safety, and possible solutions
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Hydrates on the subsea wellhead in deepwater wells: Study on the growth mechanisms, impacts on drilling safety, and possible solutions

机译:深水井下井头的水合物:研究生长机制,对钻井安全的影响,以及可能的解决方案

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Hydrate formation poses a risk to deepwater drilling operations. Most current studies on the hydrate formation and its impact on deepwater drilling operations have focused on the risk associated with hydrates inside the wellbore. Few researchers have studied the risk of hydrate formation outside the wellbore, and the risks to deepwater drilling are still unclear. In the South China Sea, there have been several events of hydrate growth on the outer surfaces of the subsea wellhead. The mechanisms of hydrate growth on the outer surface of the subsea wellhead are analyzed, and the gas source is predicted by analyzing the logging data of the adjacent wells. A model for the wellhead stability is developed, and the impacts of hydrate formation on the stability of the subsea wellhead are analyzed. The gas source, temperature, pressure, solid surface roughness, and relative static subsea environment are found to be the key factors in the formation of hydrate in the marine environment The risk of hydrate formation to wellhead stability is subtle, but to blowout preventer (BOP) could be significant. Hydrates may cause BOP control failure in which the BOP could not be closed in the event of emergency; hydrate formation between the BOP and the wellhead may cause BOP not to be separated from the bottom of the wellhead. A tool was designed for controlling the formation of hydrates, with particular tilt angle and surface roughness. Bemuse the appropriate tilt angle can divert the gas bubbles to avoid the hydrate formations at the wellhead. The designed hydrate control tool successfully mitigates the risks to drilling operations.
机译:水合物形成对深水钻井作用构成风险。大多数关于水合物形成的研究及其对深水钻井作用的影响都集中在井筒内与水合物相关的风险。少数研究人员研究了井筒外水合物形成的风险,深水钻井的风险尚不清楚。在南海,海底井口外表面上有几次水合物生长。分析了海底井口外表面上的水合物生长的机制,通过分析相邻孔的测井数据来预测气体源。分析了井口稳定性的模型,分析了水合物形成对海底井口稳定性的影响。发现气体源,温度,压力,固体表面粗糙度和相对静态海底环境是在海洋环境中形成水合物的关键因素,水合物形成到井口稳定性的风险是微妙的,但井喷预防液(BOP )可能很重要。水合物可能导致BOP对照失败,因为在紧急情况下不能关闭BOP;双井和井口之间的水合物形成可能导致较孔不与井口的底部分离。设计工具,用于控制水合物的形成,特别是倾斜角度和表面粗糙度。 Bemuse适当的倾斜角可以转移气泡以避免井口处的水合物形成。设计的水合物控制工具成功地减轻了钻井作业的风险。

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