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地层H_2S侵入时井筒压力变化规律及控制研究 被引量:2

Principles of Wellbore Pressure Variation and Control during Formation H_2S Influx
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摘要 随着我国酸性油气藏勘探开发的深入,处于对井控安全的考虑,需对酸性气体侵入后井筒多相流动及相态转变规律进行研究。针对H_2S特殊的物理性质,并考虑其在井筒内相态变化,建立了钻井过程中H_2S侵入时井筒流动与传热的数学模型。将井筒传热、压力与H_2S物性参数耦合迭代计算,给出了求解方法并编写程序进行数值计算。计算结果表明:井口回压较小时,H_2S在环空上升过程中由液态转化为气态,相态转变点上部为气液两相流,其压力梯度较小,下部为井筒单相流,其压力梯度较大。H_2S侵入速度对环空压力和相变井深均有影响。随着侵入量增大,井底压力先急剧减小,后基本保持不变,而相变井深先增大后减小。井口回压对井底压力影响较大。随着井口回压增大,井底压力增大,但影响程度逐渐减小。井口回压不仅可以控制井筒是否发生相变,而且对相变井深位置影响十分大。对是否考虑传热对相变井深和井底压力的影响进行了对比分析。研究对提高酸性油气藏开发勘探安全具有一定指导意义。 The growing number of acid reservoirs were explored and developed in the China and the increasing necessity for well control safety has been forcing the oil and gas industry to study the principles of wellbore multi- phase flow and phase transition of drilling during acid fluid invasion. Based on the theories of pressure drop and heat transfer for liquid-gas two phases flow in wellbore, a mathematical model for wellbore flow and heat transfer, in which the special physical properties of supercritical fluid (SC-F) and its phase transition were considered in the wellbore, was established during formation SC-F influx, and a solution method of the model was proposed and pro- gram was compiled for the numerical calculation. The results indicate that H2S transforms from liquid to gas state during its rising in the annulus when backpressure is small, and the flow in the annulus above the phase transition point is two-phase flow, while the flow in the annular below the phase transition point is single-phase flow and the pressure gradient is large. The pressure and depth of phase transition are both influenced by H2S influx rate, with the increase of H2S influx rate, the bottom-hole pressure decreases rapidly at first and then remains steady but the depth of phase transition increases at first and then decreases. The bottom-hole pressure increases with the increase of backpressure, but the amplitude of affecting becomes small. The backpressure not only controls the occurrence of phase transition but also greatly affects the depth of phase transition. Bottom-hole pressure and depth of phase transition influenced by heat transfer are analyzed. The study is of certain significance for improving the safety of acidic oil & gas reservoirs exploration and development.
出处 《科学技术与工程》 北大核心 2013年第4期877-883,共7页 Science Technology and Engineering
基金 国家"973"重点基础研究发展规划项目(2010CB226704)资助
关键词 硫化氢 地层流体侵入 井筒压力 井筒传热 相态转变 hydrogen sulfide formation liquid invasion wellbore pressure wellbore heat transfer phase transition
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参考文献10

  • 1邱奎 庞晓虹 刘定东.高含硫天然气井喷的扩散范围估计与防范对策.石油天然气学报,2008,30(2):114-118.
  • 2袁平.高含硫化氢二氧化碳气田钻井的超临界态相变与井控安全,成都,西南石油大学:2006:1-6.
  • 3赵金洲.我国高含H_2S/CO_2气藏安全高效钻采的关键问题[J].天然气工业,2007,27(2):141-144. 被引量:24
  • 4Sakoda N, Uematsu M. A thermodynamic property model for fluid phase hydrogen sulfide. International Journal of Thermophysics, 2004 ; 25 (3) :709-737.
  • 5Reid R C, Prausnitz J M, Poling B E. The Properties of Gases and Liquids, pp. 454--471 and pp. 582--604, Fourth Edition McGraw- Hill, New York, 1987.
  • 6Hasan A R, Kabir C S. A study of nmltiphase flow behavior in vertical wells. SPE Production Engineering , May 1988.
  • 7陈家琅,陈涛平.石油气液两相管流.北京:石油工业出版社.2010.
  • 8Chen N H. An explicit equation for friction factor in pipe. Ind Eng Chem Fundam, 1979 ; 18 (3) :296-297.
  • 9Hasan A R, Kabir C S. Modeling two-phase fluid and heat Flows in geothermal wells. SPE 121351, 2009.
  • 10Gao Changhong. Empirical heat transfer model for slug flow and bubble flow in vertical subsea pipes. SPE85651,2003.

二级参考文献10

  • 1谷明星,里群,邹向阳,陈卫东,郭天民.固体硫在超临界/近临界酸性流体中的溶解度(Ⅰ)实验研究[J].化工学报,1993,44(3):315-320. 被引量:20
  • 2钟太贤,袁士义,周龙军,李海平,杨维宗,罗凯.含硫天然气相态及渗流[J].石油勘探与开发,2004,31(5):109-111. 被引量:27
  • 3戴金星.中国含硫化氢的天然气分布特征、分类及其成因探讨[J].沉积学报,1985,3(4):109-120.
  • 4SHEDID S A,ZEKRI A Y.Formation damage due to sulfur seposition in porous media[J].SPE 73721,2002.
  • 5New,lower-cost acid gas removal and sulfur recovery technology for Permian Basin natural gas production operations[J].SPE 59712.
  • 6KENNEDY HT,WIELAND D R.Equilibrium in the methane-carbon dioxide-hydrogen sulfide-sulfur system,trans[J].AIME,1960,219.
  • 7SWIFT S C,MANNING F S,THOMPSON R E.Sulfurbearing capacity of hydrogen sulfide gas[J].Society of Petroleum Engineers Journal,April,1976:57-63.
  • 8BRUCE E ROBERT.The effect of sulfur deposition on gas well inflow performance[J].SPE 36707.
  • 9ABOU-KASSEM J H.Experimental and numerical modeling of sulfur plugging in carbonate reservoirs[J].JPSE,2000,26:91-103.
  • 10SKINNER L.CO2 blowouts:An emerging problem[J].World Oil,2003 (1).

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