西南石油大学学报(自然科学版) ›› 2011, Vol. 33 ›› Issue (4): 135-138.DOI: 10.3863/j.issn.1674 – 5086.2011.04.025

• 石油与天然气工程 • 上一篇    下一篇

粘弹性流体驱替残余油微观力计算

王春生, 杨树人, 刘丽丽   

  1. 东北石油大学石油工程学院, 黑龙江 大庆 163318
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2011-08-20 发布日期:2011-08-20

Micro-Force Calculation in Residual Oil Displacement by Viscoelastic Fluid

WANG Chun-sheng, YANG Shu-ren, LIU Li-li   

  1. School of Petroleum Engineering, Northeast Petroleum University, Daqing, Heilongjiang 163318, China
  • Received:1900-01-01 Revised:1900-01-01 Online:2011-08-20 Published:2011-08-20

摘要: 为进一步探索聚合物的弹性对残余油的驱替机理, 选取上随体 Maxwell 本构方程, 建立粘弹性流体在
微孔道中的流动方程。在应力张量理论基础上, 计算作用在残余油膜上的水平偏应力差。分析、 对比不同
流变性流体、 油膜宽度及压力梯度对作用在残余油膜上的水平偏应力差的影响。结果表明: 在油田生产实
际平均压力梯度为 0.02 MPa/m 的情况下, 水、 幂律流体 ( n = 0.6 ) 、 粘弹性流体 ( We= 0.3) 三者作用于残余油
膜上的水平偏应力差的比值约为 1:10:25, 即粘弹性流体 ( We= 0.3) 驱油时对油膜的驱动力大约是水驱的
25 倍。进一步从理论上证明了粘弹性流体能够提高微观驱油效率这一结论。

关键词: 粘弹性流体, 残余油, 微观力, 驱油效率, 弹性

Abstract: To further explore the displacement mechanism of flexibility of the polymer to the residual oil, upper-
convected Maxwell constitutive equation is selected, and flow equations of the viscoelastic fluidflow in porous
road are established. The horizontal deviatoric stress difference on the residual film iscalculated on the basis of the
stress tensor theory. The impacts of the different rheological fluid, thewidth of oil film, and pressure gradient on
the horizontal deviatoric stress difference on the residualfilm are analyzed and compared. The results show that:
When flooding with water, power law fluid(n = 0.6) and viscoelastic fluid(We= 0.3) , the ratio of horizontalde-
viatoric stress difference on the residual filmis about 1:10:25 at actual oil production mean pressure gradient of
0.02 MPa/m, which means that the driving force of viscoelastic fluid(We = 0.3)on the film is about 25 times
the water flooding. This innovative conclusion that the microscopic displacement efficiency can be improved by
viscoelastic fluids is further proved theoretically.

Key words: viscoelastic fluid, residual Oil, micro force, displacement efficiency, flexibility

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