天津科技 ›› 2025, Vol. 52 ›› Issue (05): 31-33+37.

• 应用技术 • 上一篇    下一篇

高含硫化氢的潜山灰岩同层溢漏井段安全钻井工艺与施工技术

张居贵, 刘欣, 陈治中, 杨志   

  1. 中海油田服务股份有限公司 天津 300459
  • 收稿日期:2025-04-09 发布日期:2026-01-05

Safe drilling technology and construction techniques for same layer overflow well section in buried hill limestone formation with high hydrogen sulfide content

ZHANG Jugui, LIU Xin, CHEN Zhizhong, YANG Zhi   

  1. China Oilfield Services Limited,Tianjin 300459,China
  • Received:2025-04-09 Published:2026-01-05

摘要: 国内海上某潜山裂缝灰岩在钻井过程中发生失返性井漏,中途曾改用泡沫钻井液+控压钻井工艺,因返出物含硫化氢气体而无法按照海洋井控要求施工。后改用海水强钻工艺,测量环空液面在转盘面以下50 m,但在钻进期间,地层硫化氢不断进入井筒并置换到井口,严重威胁现场作业人员和钻具安全。经计算,该井段地层漏失压力当量密度小于孔隙压力当量密度,无安全作业压力窗口。此外,受恶性漏失影响,全程无岩屑返出。为解决以上技术难题,现场改进泥浆帽钻井工艺,在清水强钻期间,一方面从井口向环空间歇泵入含除硫剂的稠滞气塞,解决硫化氢溢出带来的风险;另一方面简化钻具组合,优选钻井参数并控制钻速,减少岩屑尺寸,最终盲钻940 m,顺利完成钻井作业。

关键词: 潜山裂缝, 恶性漏失, 硫化氢, 泥浆帽

Abstract: During the drilling of a buried hill fractured limestone formation in an area of China Sea,a severe circulation lost occurred. The pressure-control drilling technology was used halfway through the drilling process,and the returned mud contained high levels of hydrogen sulfide gas,making it impossible to proceed according to the relevant well control requirements. Later,the seawater drilling process was used and annular liquid lever was measured 50 meters below the rotary table surface. However,during drilling,hydrogen sulfide from the formation continuously entered the wellbore and was replaced at the wellhead,posing a threat to the safety of on-site operators and drilling tools. According to calculations,the equivalent density of formation leakage pressure in this well section is less than the equivalent density of pore pressure,and there is no safe operating pressure window. In addition,during drilling,there was no return of rock debris due to severe leakage. In order to solve this technical problem,the mud cap drilling process was implemented on site. During the water drilling period,on the one hand,a thick stagnant gas plug containing a sulfur removal agent was intermittently pumped from the wellhead to the annular space to solve the risk of hydrogen sulfide overflow. On the other hand,the BHA was simplified,drilling parameters were optimized,and drilling speed was controlled to reduce the size of rock cuttings. Finally,the drilling operation was successfully completed for 940 m.

Key words: crack in buried hill, severe leakage, hydrogen sulfide, mud cap

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