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超稠油直井-水平井组合蒸汽辅助重力泄油物理和数值模拟 被引量:72

physical and numerical simulation of steam assisted gravity drainage with vertical and horizontal well combination in extra heavy oil reservoir
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摘要 研究了中深层超稠油油藏在直井蒸汽吞吐中后期,用直井注汽水平井采油的方式转蒸汽辅助重力泄油(steam as-sisted gravity drainage,SAGD)开发的机理。应用高温高压比例物理模拟方法,研究了水平井布于直井斜下方时SAGD蒸汽腔的形成和扩展过程。结果表明,转SAGD的初期以蒸汽驱动作用为主并逐步向重力泄油作用过渡,并可划分为蒸汽吞吐预热、驱替泄油、稳定泄油、衰竭开采4个开采阶段。利用数值模拟优选了布井方式、井网井距、水平井段长度、转SAGD时机和注采参数。该模拟方法在辽河油田杜84块超稠油油藏开发中取得了较好的现场试验效果。 The recovery mechanism was studied for the steam assisted gravity drainage (SAGD) process as a follow-up process after production by cyclic steam stimulation (CSS) in a medium deep and extra heavy oil reservoir using combined vertical injectors and horizontal producers. A high pressure and high temperature scaled physical model was used to study the formation and growth process of the steam chamber during SAGD experiment, with horizontal wells placed below the vertical wells at the offset distance, It is shown that the recovery mechanism is gradually transited to gravity drainage from an initial steam displacement after switching from CSS to SAGD. The entire recovery process can be divided into four stages, including preheating by steam stimulation, steam displacement, stabilized gravity drainage and depletion. A numerical simulation was conducted to optimize the well placement, well patterns and spacing, horizontal interval length, timing of switching to SAGD and operating parameters. A promising result was achieved from a field testing of this process in the extra heavy oil reservoirs of Du 84 block, Liaohe Oilfield.
出处 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2007年第4期64-69,共6页 Journal of China University of Petroleum(Edition of Natural Science)
基金 中国石油天然气股份有限公司重大开发试验项目(2005-07)
关键词 SAGD 超稠油 物理模拟 数值模拟 蒸汽吞吐 steam assisted gravity drainage extra heavy oil physical simulation numerical simulation cyclic steam stimulation
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参考文献10

  • 1BUTLER R M.Steam-assisted gravity drainage:concept,development,performance and future[J].Journal of Canadian Petroleum Technology,1994,33(2):44-50. 被引量:1
  • 2BUTLER R M,STEPHENS D J.The gravity drainage of steam-heated oil to parallel horizontal wells[J].Journal of Canadian Petroleum Technology,1981,20(2):90-96. 被引量:1
  • 3KARSRAIE M,SINGHAL A K.Screening and design criteria for tangleflags type reservoirs[R].SPE 37571,1997. 被引量:1
  • 4BUTLER R M,MCNAB G S,LO H Y.Theoretical studies on the gravity drainage of heavy oil during in-situ steam heating[J].Canadian Journal of Chemical Engineering,1981,59(4):455-460. 被引量:1
  • 5YANG Li-qiang.Field test of SAGD as follow-up process to CSS in Liaohe Oilfield of China[R].CIPC,Calgary,2006:146. 被引量:1
  • 6陈月明..注蒸汽热力采油[M],1996.
  • 7关文龙,田利,郑南方.水平裂缝蒸汽辅助重力泄油物理模拟试验研究[J].石油大学学报(自然科学版),2003,27(3):50-54. 被引量:11
  • 8PUJOL L,BOBERG T C.Scaling accuracy of laboratory steamflooding models[R].SPE 4191,1972. 被引量:1
  • 9STEGEMEIER G L,VOLEK C W,LAUMBACH D D.Representing steam processes with vaccum models[R].SPE 6768,1977. 被引量:1
  • 10YANG Li-qiang,ZHOU Da-sheng.SAGD as follow-up to cyclic steam stimulation in a medium deep and extra heavy-oil reservoir[R].SPE 104406,2006. 被引量:1

二级参考文献6

  • 1.中华人民共和国石油天然气行业标准SY/T 6311-1997.蒸汽驱三维物理模拟试验技术要求[S].,1997.. 被引量:1
  • 2关文龙 田利.超稠油水平裂缝蒸汽辅助重力泄油(FSAGD)渗流机理[A].钱玉怀.中国石油学会第三届青年学术年会论文集[C].北京:石油工业出脏社,2001.. 被引量:1
  • 3BRITTON M W, MARTIN W L, MCDANIEL J D and WAHL H A. Fracture preheat oil recovery process[ P].U S Patent 4265310. May 5.1981. 被引量:1
  • 4BRITTON M W, MARTIN W L, LEIBRECHT R J and HARMON R A. Street ranch pilot test: fracture-as-sisted steamflood technology[R]. SPE 10707, 1983. 被引量:1
  • 5STANG H R and SONI Y. Saner ranch pilot test of frac-ture-assisted seamflood technology[J ]. Journal Pet Tech,1987, 39(6) :684 - 696. 被引量:1
  • 6关文龙,万仲谋,陈永忠.三维物理模拟试验装备及试验技术[J].石油仪器,1997,11(5):27-30. 被引量:5

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