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前置液流变性对顶替界面稳定性影响的数值模拟 被引量:13

Numerical simulation on influence of rheological property of front fluid on stability of cement displacement interface
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摘要 借助计算流体力学(CFD)软件FLUENT 6.20,对环空井筒内水泥浆顶替过程进行了数值模拟,模拟环空井筒外径0.24 m、内径0.18 m、高8 m。在顶替速度为0.4 m/s、偏心度为0.4的条件下,计算得到了顶替界面形状以及前置液流变参数屈服应力、稠度系数和流性指数对顶替界面稳定性及顶替效率的影响规律,并对数值模拟结果进行了实验验证。数值模拟结果表明,降低前置液的屈服应力、稠度系数及流性指数有助于提高水泥浆和前置液之间界面的稳定性和顶替效率。固井设计时要考虑界面的稳定性,对前置液流变参数进行调整。 The displacement process of cement in annulus was simulated with computational fluid dynamics software of FLUENT 6. 20. The inner and outer diameters of the simulated annulus wellbore are 0. 18 m and 0. 24 m respectively, and its height is 8 m. The simulation was taken under the condition of eccentricity of 0. 4 and the displacement velocity of 0.4 m/s. The displacement interface figure and the influences of the rheological parameters of the front fluid on stability of displacement interface and displacement efficiency were obtained under different conditions of yield stress, power-law index and consistency index. The results of numerical simulation agree well with those of experiment. The simulated results indicate that decreasing the yield stress, power-law index and consistency index are helpful for improving the stability of cement displacement interface and displacement efficiency. Considering the stability of displacement interface, the rheological parameters of front fluid should be adjusted in cementing design.
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6期51-54,共4页 Journal of China University of Petroleum(Edition of Natural Science)
基金 国家'863'计划项目(2006AA09A106)
关键词 环空井筒 前置液 流变性 顶替界面 稳定性 数值模拟 annulus wellbore front fluid rheological property displacement interface stability numerical simulation
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  • 1王越之,邝明聪.用曲线回归确定钻井液的流变模式[J].钻井液与完井液,1993,10(2):11-13. 被引量:2
  • 2郑永刚,郝俊芳.偏心环空紊流注水泥顶替理论研究[J].石油学报,1994,15(3):139-145. 被引量:5
  • 3郑永刚,郝俊芳,王治平.活动套管提高注水泥顶替效率的理论分析[J].天然气工业,1994,14(2):48-51. 被引量:6
  • 4郑永刚,姚坤全.注水泥隔离液的用量及作用机理[J].天然气工业,1995,15(6):43-46. 被引量:10
  • 5Mclean R H, Manry C W, Whitaker W W . Displacement mechanics in primary cementing[J]. Journal of Petroleum Technology,1967,19(2) :251-260.
  • 6Lockyear C F,Ryan D F,Gunningham M M. Cement channeling.how to predict and prevent[J]. SPE Drilling Engineering, 1990,5(3) :201-208.
  • 7刘崇建 黄柏宗 徐同台.油气井注水泥理论与应用[M].北京:石油工业出版社,2000.295-307.
  • 8Tehranl A, Ferguson J, Bittleston S H. Laminar displacement in annuli: A combined experimental and theoretical study[R]. SPE24569,1992: 191-202.
  • 9RAVI K M, SUTTON D L. New rheological correletion for cement slurries as a function of temperature[R]. SPE 20449,1991.
  • 10THENSING A. New device for rheology measurements of proppant-laden fluids with the Fann 50 viscometer [R]. SPE 58759.2000.

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