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高压气井压井井筒温度场预测与影响因素分析
李昊1,孙宝江1,赵欣欣1,路继臣2,王志远1,马永乾1
(1.中国石油大学石油工程学院,山东东营257061;2.中国石油集团海洋工程有限公司,北京100176)
摘要:
从反循环压井工艺特点出发,以质量守恒、动量守恒和能量守恒为理论基础,推导出反循环压井过程井筒温度 场计算模型,并对压井液人口温度、压井液密度、循环时间、压井液排量、压井液导热系数、井深等对反循环压井过程 中井筒温度场的影响进行分析。结果表明:随井深增加、压井液人口温度提高、压井液排最减小、循环时间缩短、压 井液导热系数增大、压井液密度减小,井筒温度线向高温偏移,反之井筒温度线向低温偏移;调整压井液排量和压井 液人口温度是改善井筒温度场最有效的途径。
关键词:  高压气井  反循环压井  井筒温度场
DOI:
分类号:
基金项目:“十一五”国家科技支撑计划(2008BAB37B02);山东省自然科学基金项目(Y2007A32)
Prediction of wellbore temperature fleld and analysis of influence factor for high-pressure gas well kill
LI Hao1,SUN Bao-jiang1,ZHAO Xin-xin1,LU Ji-chen2,WANG Zhi-yuan1,MA Yong-qian1
(1. College of Petroleum Engineering in China University of Petroleum, Dongying 257061,Chirm;2. China National Petroleum Offshore Engineering Company Limited, Beijing 100176, China)
Abstract:
According to the characteristics of reverse circulation kill and the basic principle of conservation of mass,momentum and energy, a calculation model of wellbore temperature field of reverse circulation kill process was established. The effects of inlet temperature, density, circulation time, flow rate, thermal conductivity of kill fluid and well depth on the wellbore temperature field were analyzed. The results show that with the well depth,inlet temperature and thermal conductivity of kill fluid increasing, and flow rate, circulation time, density of kill fluid decreasing, the wellbore temperature line is shifting ,to high temperature, otherwise the wellbore temperature line is shifting to low temperature. The wellbore temperature distribution can be improved by adjusting the flow rate and inlet temperature of kill fluid.
Key words:  high-pressure gas well  reverse circulation kill  wellbore temperature field
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