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Research on evaluation and prevention of hydrate formation and blockage risk in wellbore during deepwater gas wells drilling

机译:深水煤气井钻井井中水合物形成及堵塞风险评价及预防研究

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摘要

The hydrates formation and blockage in wellbore is directly related to the safety of deepwater gas well drilling. However, the current research on hydrates risk prevention during deepwater drilling is still insufficient. In this work, a novel hydrate formation-blockage risk assessment method in wellbore is proposed. Firstly, a new hydrate formation region (HFR) prediction model consists of mass, momentum and energy balance equations was established and was verified on a deepwater gas well in South China Sea. Secondly, the wellbore blockage risk in different drilling stages is evaluated and the prediction results were in good agreement with field results. Finally, economical-effective hydrate inhibition measures are proposed to ensure the safety and efficiency of deepwater drilling. The results show that the increase of gas invasion rate, drilling fluid injection temperature and drilling fluid circulation rate are helpful to shorten HFR. In this study, the total length of HFR can be reduced by 59.26% when the gas invasion rate increases from 0 to 14 L/s, while the total HFR can be reduced to 74.93% when the drilling fluid circulation rate increases from 0.01 to 0.09 L/s. Increasing drilling fluid circulation temperature is the most direct and effective measure to reduce HFR and the HFR in annulus will disappear when drilling fluid circulation temperature rises above 36 degrees C. Due to the limitation of gas hydrate induction period and multi-phase flow characteristics, the wellbore plugging risk in drilling fluid circulation stage is very low, while the hydrate blockage risk in well shut-in stage is high relatively. Meantime, properly increasing drilling fluid circulation rate and injection temperature, choosing appropriate drilling balance mode during drilling fluid circulation stage, reasonable controlling the wellbore annulus pressure, optimizing shut-in time and injecting appropriate inhibitors during well shut-in stage can effectively ensure the completion of safe-economic-efficient deepwater gas wells drilling.
机译:井筒的水合物形成和堵塞与深水气体井钻孔的安全直接相关。然而,目前深水钻井期间水合物风险预防研究仍然不足。在这项工作中,提出了一种新型水合物形成堵塞风险评估方法在蜂窝中。首先,新的水合物形成区域(HFR)预测模型由质量,动量和能量平衡方程组成,并在南海的深水汽油井上核实。其次,评估了不同钻井阶段的井筒堵塞风险,并且预测结果与现场结果吻合良好。最后,提出了经济有效的水合抑制措施,以确保深水钻井的安全性和效率。结果表明,气体侵袭率的增加,钻井液喷射温度和钻井液流体循环率有助于缩短HFR。在这项研究中,当气体侵袭率从0到14L / s增加时,HFR的总长度可以减少59.26%,而当钻井流体循环率从0.01增加到0.09时,总HFR可以减少到74.93% L / s。增加钻孔流体循环温度是最直接且有效的措施,以减少HFR,随着气体水合物感应周期和多相流动特性的限制,钻井液循环温度升高时,环形空间中的HFR在环空体中将消失。井筒堵塞钻井液循环阶段的风险非常低,而水合物堵塞在井中的封闭风险相对较高。同时,适当增加钻孔流体循环速率和喷射温度,在钻井液循环期间选择合适的钻井平衡模式,合理地控制井筒环压力,优化闭合时间并在良好的关闭阶段注入适当的抑制剂可以有效地确保完成安全经济高效的深水煤气井钻孔。

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