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近井地应力场及其对渗透率的伤害 被引量:2

STRESS AROUND WELLBORE AND IT'S DAMAGE TO FIELD'S PERMEABILITY
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摘要 近井油藏流体压力和有效地应力变化较大,导致油藏岩石结构和渗流能力发生动态变化,进而影响生产。为研究这一变化,在试验研究岩心渗透率随地应力变化的基础上,耦合流体渗流场和地应力场,采用迭代方法得到了近井应力场和渗流场解,并分析了井壁附近油藏岩石弹塑性变形、地应力分布以及对储层渗流能力的伤害情况。 With production, fluid pressure and effective stress will be changed greatly, especially around wellbore. Then it will induce the change of link structure and damage the permeability, so the productivity of the well will be influenced. Based on the experimental research about the relation between permeability and effective stress, the numerical solution is been developed with the method of coupled fluid-solid, and of iterative calculation. It is shown by the example that this method can be used to analyze stress and permeability damage around wellbore.
作者 范学平 吴宏
出处 《石油钻采工艺》 CAS CSCD 北大核心 2001年第4期42-45,共4页 Oil Drilling & Production Technology
基金 中国石油天然气集团公司科技发展部1999~2000年资助项目"各向异性 变形介质油藏及流固耦合渗流机理研究"
关键词 近井地带 应力场 渗透率 钻井 油藏 near wellbore area stress field influence permeability research
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  • 1范学平,黄建民,吴宏.油井酸压后三维渗流动态预测[J].西南石油学院学报,1995,17(4):72-79. 被引量:6
  • 2范学平,黄建民,赵立强.碳酸盐岩三维酸化压裂气井动态分析[J].天然气工业,1996,16(1):50-55. 被引量:8
  • 3张金才,岩体渗流与煤层底板突水,1996年,56页
  • 4Bai M,Pock Mech Rock Engng,1994年,4期,235页
  • 5JOSE G. Numerical simulation of coupled fluid-flow/ge omechanical behavior of tight gas reservoirs with stress sensitive permeability[J]. SPE 39055 1997.
  • 6DAVIES J P, et al. Stress-dependent permeability: charac terization and Modeling[J]. SPE 56813.
  • 7ANTONIN. Advances in coupled geomechanical and reser voir modeling with applications to reservoir compaction[J]. SPE 51927.
  • 8ADAM Rewis. Simulation of coupled thermal/fluid-flow/ geomechanical interactions in fluid injections [J]. SPE 51921.
  • 9CHEN Her-Yuan. Coupling fluid-flow and geomechanics in dual-porosity modeling of naturally fractured reservoirs[J].SPE 38884.
  • 10张金才,刘天泉,张玉卓.裂隙岩体渗透特征的研究[J].煤炭学报,1997,22(5):481-485. 被引量:54

共引文献75

同被引文献13

  • 1范学平.气藏出砂判别方法探讨及其在东海平湖油气田气井配产中的应用[J].中国海上油气(工程),2005,17(3):183-186. 被引量:4
  • 2FAN Xueping, LIU Shenshu, ZHANG Shicheng. Mathematical simulant study of coupled naukiphase and solid-rock after hydrolic fracture of oil reservoir[C]//Proceeding of the 2001 ISRM International Symposium-2nd Asian Rock Mechanics Symposium, Beijing, 2001.
  • 3GEILIKMAN M B, DUSSEAULT M B. Fluid rate enhance- ment from massive sand production in heavy oil reservoirs[J]. Journal of Petroleum Science and Engineering, 1997,17:5-18.
  • 4范学平,郭少儒,张晓丹.平湖油气田气举采油以及气举和电潜泵耦合采油工艺研究及现场试验[R].中海油上海分公司科研报告,2006年.
  • 5Fan Xueping. Mathematical Simulant Study of Coupled Multiphase and Solid - rock After Hydrolic Fracture of Oil Reservoir[ C ]. Proceeding of the 2001 ISRM International Symposium -2nd Asian Rock Mechanics Symposium( ISRM 2001 - 2nd ARMS)/11 - 14 September 2001/Beijing/China.
  • 6Zhang Fengshan, Fan xueping. Field Experiment of En- hancing Heavy Oil Recovery by Cyclic Flue Gas Injection [ J]. SPE64724.
  • 7范学平.水驱特征曲线研究平湖剩余油储量和含水率变化[J].上海石油天然气,2006(2):9-13.
  • 8范学平.气井极限产气量确定其及在平湖气井管理中的应用[J].上海石油天然气,2005(10):11-13.
  • 9范学平,吴宏,张华春.神经网络专家系统及其在压裂酸化决策中的应用研究[J].石油勘探与开发,1998,25(1):73-75. 被引量:12
  • 10范学平,段天须.尼日利亚A深海油田投产面临问题及其应对措施研究[J].中国海上油气,2009,21(4):284-288. 被引量:4

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