Multiscale simulation of highly heterogeneous subsurface flow with physically adaptive 3D unstructured grids

被引:0
|
作者
Mehrdoost, Zahra [1 ]
机构
[1] Islamic Azad Univ, Dept Mech Engn, Ahvaz Branch, Ahvaz, Iran
关键词
Multiscale finite volume method; Adaptive unstructured grids; Algebraic multiscale solver; Heterogeneity; Subsurface flow; FINITE-VOLUME METHOD; ELLIPTIC PROBLEMS; POROUS-MEDIA; MULTIPHASE FLOW; ELEMENT-METHOD; FORMULATION; SOLVER;
D O I
10.1016/j.advwatres.2023.104611
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
The multiscale finite volume framework is extended with physical-based grid adaptation (MSFV-GA) for threedimensional fully unstructured grids. The MSFV method produces large errors for highly heterogeneous and anisotropic problems on standard coarse grids generated based on geometrical features. Adding constraints based on the fine-scale physical properties to construct coarse grids can increase the accuracy and robustness of the MSFV solutions. A novel and automated coarse grid generation strategy adaptable to the reservoir heterogeneity for 3D unstructured grids is presented. Adaptive coarse grids are generated based on local variations of fine scale permeability field. The proposed procedure is very flexible respect to the local physical and geometrical limitations in coarse blocks. Multiscale coarse grid adaptation notably improves the basis functions calculations. The performance of the MSFV-GA in handling challenging problems involving high media contrasts or impermeable shale layers is assessed. The results are very promising and show that the MSFV-GA can accurately approximate complex physics problems. The presented 3D unstructured procedure can notably improve the applicability of the multiscale finite volume method and provide a promising framework for the next generation of reservoir flow simulators.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Multiscale finite volume method with adaptive unstructured grids for flow simulation in heterogeneous fractured porous media
    Zahra Mehrdoost
    Engineering with Computers, 2022, 38 : 4961 - 4977
  • [2] Multiscale finite volume method with adaptive unstructured grids for flow simulation in heterogeneous fractured porous media
    Mehrdoost, Zahra
    ENGINEERING WITH COMPUTERS, 2022, 38 (06) : 4961 - 4977
  • [3] Parallel adaptive refinement for unsteady flow calculations on 3D unstructured grids
    Waltz, J
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2004, 46 (01) : 37 - 57
  • [4] Numerical simulation of 3D turbulent bend flow based on unstructured grids
    Lv, Suiju
    Gao, Feng
    Li, Chunguang
    INTERNATIONAL JOURNAL OF HEAT AND TECHNOLOGY, 2018, 36 (03) : 1037 - 1046
  • [5] Turbulent flow computations on 3D unstructured grids
    Univ of Wales, Swansea, United Kingdom
    Finite Elem Anal Des, 4 (353-363):
  • [6] Turbulent flow computations on 3D unstructured grids
    Manzari, MT
    Hassan, O
    Morgan, K
    Weatherill, NP
    FINITE ELEMENTS IN ANALYSIS AND DESIGN, 1998, 30 (04) : 353 - 363
  • [7] 3D COMPOSITIONAL RESERVOIR SIMULATION IN CONJUNCTION WITH UNSTRUCTURED GRIDS
    Araujo, A. L. S.
    Fernandes, B. R. B.
    Drumond Filho, E. P.
    Araujo, R. M.
    Lima, I. C. M.
    Goncalves, A. D. R.
    Marcondes, F.
    Sepehrnoori, K.
    BRAZILIAN JOURNAL OF CHEMICAL ENGINEERING, 2016, 33 (02) : 347 - 360
  • [8] 3D global flow stability analysis on unstructured grids
    Morzynski, Marek
    Thiele, Frank
    PARALLEL PROCESSING AND APPLIED MATHEMATICS, 2008, 4967 : 1293 - +
  • [9] Cell-vertex based parallel and adaptive explicit 3D flow solution on unstructured grids
    Yilmaz, E
    Kavsaoglu, MS
    Akay, HU
    Akmandor, IS
    INTERNATIONAL JOURNAL OF COMPUTATIONAL FLUID DYNAMICS, 2001, 14 (04) : 271 - 286
  • [10] ADAPTIVE H-REFINEMENT ON 3D UNSTRUCTURED GRIDS FOR TRANSIENT PROBLEMS
    LOHNER, R
    BAUM, JD
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 1992, 14 (12) : 1407 - 1419