Research and Practice of Full Life Cycle Well Integrity in HTHP Well, Tarim Oilfield

Hongtao Liu, Lihu Cao, Jun-feng Xie, Xiangtong Yang, Nu Zeng, Xuesong Zhang, Fei Chen
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引用次数: 6

Abstract

There is abundant natural gas in Kuqa foreland area of Tarim basin, the reservoir has characteristics of ultra depth(6500m-8000m), high pressure(115MPa-140MPa), high temperature(170°C-190°C) and complex corrosive medium, which bring well integrity high challenge. There are 52 production wells in the Kuqa foreland basin in 2012. The 16 wells of these production wells exist sustained casing pressure(SCP). The SCP wells caused by the tubing string failure is 61%. Since 2012, in order to build safe well barrier and achieve scientific production management, consider all important periods of drilling, well testing, well completion and production in well full life cycle. the design methods of the four main well barrier components(casing string, cement, tubing string, well head) are optimized. A set of technology for well barrier quality control, well maintenance and well production management is formed. Finally, the key technology of full life cycle well integrity for ultra depth, HPHT gas well is formed. In view of the large angle of bedding, well deviation controlled difficultly, and coexistence of high pressure saline aquifer and week bed in one open hole section which lead to serious casing wear and poor cement stone, the vertical well drilling technology, the collapse resistance casing design methods, the casing wear preventing measures, negative pressure test method and high temperature, high density cementing technology are completed. These technologies improve the safety of casing string and the quality of cement. Considering the extreme working conditions(the partial pressure of CO2 is beyond 2MPa, The content of chlorine is about 80000mg/L, acid job, 136MPa pump pressure in well head)of tubing string, material selection method, triaxial stress analysis method, quality control technology for tubing string is optimized. The failure ratio of tubing string reduced from 50% in 2013 to zero in 2017. Referencing API RP 90-2 and IOS16530-2, a special calculation method for annulus pressure management is formed, which include minimum operation pressure and maximum allowable pressure for different annulus. Then a risk assessment system is established. The SCP wells is controlled less than 22% in the condition of increasing number of high pressure gas wells. Based on the research introduced above, China's first set of well integrity specification series is completed. The integrity specification series include the well integrity guide, the well integrity design and the well integrity management for high temperature high pressure and high sulfur gas. These results effectively support safty in production for high pressure gas field in Tarim basin, and will promote the well integrity level in the same kind of oilfield.
塔里木油田高温高压井全生命周期井完整性研究与实践
塔里木盆地库车前陆地区天然气储量丰富,储层具有超深(6500m ~ 8000m)、高压(115mpa ~ 140mpa)、高温(170℃~ 190℃)、复杂腐蚀介质等特点,对井的完整性提出了很高的挑战。库车前陆盆地2012年生产井52口。这些生产井中有16口井存在持续套管压力(SCP)。由管柱失效引起的SCP井占61%。从2012年开始,为了建立安全井障,实现科学的生产管理,在井全生命周期中考虑钻井、试井、完井和生产的所有重要时期。优化了4个主要井障部件(套管柱、水泥、管柱、井口)的设计方法。形成了一套井眼质量控制、井眼维护和井眼生产管理的技术体系。最后,形成了超深高温气井全生命周期井完整性的关键技术。针对层理角度大、井斜控制困难、同一裸眼段高压盐水层与周层共存导致套管磨损严重、固井效果差的问题,完成了直井钻井技术、抗塌套管设计方法、防套管磨损措施、负压试验方法和高温高密度固井技术。这些技术提高了套管柱的安全性和固井质量。针对管柱的极端工况(CO2分压大于2MPa、氯含量80000mg/L左右、酸作业、井口泵压136MPa),对管柱的选材方法、三轴应力分析方法、质量控制工艺进行了优化。管柱的故障率从2013年的50%降至2017年的零。参考API RP 90-2和IOS16530-2,形成了环空压力管理的专用计算方法,包括不同环空的最小操作压力和最大允许压力。然后建立了风险评估体系。在高压气井数量不断增加的情况下,SCP井控制在22%以下。在此基础上,完成了国内第一套井完整性规范系列。完整性规范系列包括高温高压高硫气体井完整性指南、井完整性设计和井完整性管理。这些成果有效地支撑了塔里木盆地高压气田的安全生产,提高了同类型油田的井完整性水平。
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