期刊文献+

火驱储层区带特征实验研究 被引量:75

Experimental research on thermodynamic characteristics of in-situ combustion zones in heavy oil reservoir
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摘要 利用一维和三维火烧油层驱油物理模拟实验装置,研究了稠油油藏直井井网火驱过程中各个地层区带的宏观热力学特征以及压力场、温度场、饱和度场分布规律。研究表明,从注气井到生产井可依次将地层划分为已燃区、火墙(燃烧带)、结焦带、油墙、剩余油区5个具有明显热力学特征的区带。结焦带为火驱过程提供固态燃料,高含油饱和度油墙是地层中压力梯度最大的区带,是注气压力的集中消耗带。保持一个稳定的油墙是确保火驱前沿持续推进、实现稳产和提高采收率的必要条件。 The pressure,temperature and oil saturation distributions and general thermodynamic characteristics of in-situ combustion zones with vertical well pattern in heavy oil reservoir were experimentally investigated by using 1D and 3D physical modeling systems.The experimental results indicated that five zones were characterized with distinctive thermodynamics from air injecting well to producing well,including burned zone,combustion zone,coking zone,oil bank and residual oil zone.The coking zone supplies the solid fuel for burning,while the high oil saturation bank with the largest pressure gradient in the formation is the main consumption zone of gas-injecting pressure.Maintaining a stable oil bank is necessary to ensure the forward movement of fire front,and fufill stable production and enhanced oil recovery.
出处 《石油学报》 EI CAS CSCD 北大核心 2010年第1期100-104,109,共6页 Acta Petrolei Sinica
基金 国家科技重大专项(2008ZX05012)"中深层稠油油田开发中后期接替技术"部分研究成果
关键词 火烧油层 三维物理模拟 稠油油藏 结焦带 剩余油区 提高采收率 in-situ combustion 3D physical modeling heavy oil reservoir coking zone remaining oil zone enhanced oil recovery
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  • 1陈淦,岳新建.准噶尔盆地西北缘火烧油层技术的发展和应用前景[J].新疆石油地质,1995,16(4):362-367. 被引量:8
  • 2关文龙,蔡文斌,王世虎,谢志勤,李友平.火烧驱油中地层点火温度的精确测试方法[J].石油机械,2005,33(9):65-66. 被引量:4
  • 3李少池,沈燮泉,王艳辉.火烧油层物理模拟的研究[J].石油勘探与开发,1997,24(2):73-79. 被引量:29
  • 4PENBERTHY Jr W L, RAMEY Jr H J. Design and Operation of Laboratory Combustion Tubes[R],SPE1290,1966.
  • 5COATS R, LORI ME R S, IVORY J. Experimental and Numerical Simulations of a Novel Top Down In-Situ Combustion Process.SPE30295,1995.
  • 6Kumar M.Simulation of laboratory in-situ combustion data and effect of process variation[R].SPE 16027,1987:343-357.
  • 7Crookstion R B,Culham W E,Chen E H.A numerical simulation model for thermal recovery process[J].SPEJ,1979,19(2):37-58.
  • 8Lin C Y,Chen W H.Numerical simulation of combustion tube experiments of in-situ combustion processes[J].SPEJ,1984,277(12):657-666.
  • 9PENBERTHY Jr W L, RAMEY Jr H J. Design and operation of laboratory combustion tubes[R]. SPE 1290,1966.
  • 10COATS R, LORIMER S, IVORY J. Experimental and numerical simulations of a novel top down in-situ combustion process[R]. SPE 30295,1995.

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