Citation: | HOU Jian. Streamline-Based Mathematical Model for CO2 Miscible Flooding[J]. Applied Mathematics and Mechanics, 2004, 25(6): 635-642. |
[1] |
李士伦,郭平,戴磊,等. 发展注气提高采收率技术[J]. 西南石油学院学报,2000,22(3):41—45.
|
[2] |
Nghiem L X, Fong D K, Aziz K. Compositional modeling with an equation of state [J].Society of Petroleum Engineering Journal,1981,21(12):687—698.
|
[3] |
Larson R G. Controlling numerical dispersion by timed flux updating in one dimension [J].Society of Petroleum Engineering Journal,1980,20(6):399—408.
|
[4] |
Koval E J. A method for predicting the performance of unstable miscible displacement in heterogeneous media[J].Society of Petroleum Engineering Journal,1963,3(6):145—154.
|
[5] |
Todd M R, Longstaff W J. The development, testing, and application of a numerical simulator for predicting miscible flood performance[J].Journal of Petroleum Technology,1972,24(7):874—882.
|
[6] |
Thiele M R, Batycky R P, Blunt M J. A streamline-based 3D field-scale compositional reservoir simulator[A].In:the SPE Annual Technical Conference and Exhibition[C].SPE 38889,San Antonio,1997,471—482.
|
[7] |
Prieditis J, Brugman R J. Effects of recent relative permeability data on CO2 flood modeling [A].In:the 68th Annual Technical Conference and Exhibition of SPE[C].SPE 26650,Houston, Texas,1993,467—481.
|
[8] |
Stone H L. Estimation of three-phase relative permeability and residual oil data[J].Journal of Canadian Petroleum Technology,1973,12(4):53—61.
|
[9] |
侯健,王玉斗,陈月明. 复杂边界条件下渗流场流线分布研究 [J]. 计算力学学报,2003,20(3):335—338,345.
|
[10] |
Rubin B, Edwards M. Extension of the TVD midpoint scheme to higher-order accuracy in time[A].In:the 12th SPE Symposium on Reservoir Simulation[C].SPE 25265,New Orleans,1993,375—385.
|