CHINESE JOURNAL OF COMPUTATIONAL PHYSICS ›› 2003, Vol. 20 ›› Issue (3): 193-198.

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Adaptive Nonuniform Grid Upscaling Method of Three-dimensional Transient Heterogeneous Fluids in Porous Media

YANG Quan-yi1,3, LIU Fu-ping1, YANG Chang-chun1, LIU Li-feng2, ZHUO Lei1   

  1. 1. Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100101, China;
    2. College of Material Engineering and Science, University of Chemical Engineering, Beijing 100029, China;
    3. Reservoir Engineering Administrative Department of Shengli Oilfield Limited Company, Dongying 257001, China
  • Received:2002-01-21 Revised:2002-11-26 Online:2003-05-25 Published:2003-05-25

Abstract: Adaptive grid technology is applied to upscaling method of 3D fluid equations in porous media. Where the permeability or porosity change is abnormal, the fine grid blocks are automatically adopted and the 3D fluid equations in porous media is solved by the direct method. In the other regions, the nonuniform upscaling method is adopted, i.e., using fine grid blocks in the high flow regions of the model. Using this method, the pressure distribution of the 3D transient heterogeneous fluid in porous media is calculated. Results show that the solutions by using nonuniform adaptive upscaling method of 3D transient heterogeneous fluid in porous media very approach the solutions by using fine grid blocks in the regions the permeability or porosity is abnormal and very approach the solutions by using coarse grid blocks in the other regions; however, the computation speed by using adaptive upscaling method is 100 times more than that by using fine grid block method.

Key words: coarse grid blocks, fine grid blocks, fluid equation in porous media, effective permeability or porosity, adaptive grid upscaling method

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