WELL PRODUCTIVITY INDEX FOR COMPRESSIBLE FLUIDS AND GASES

被引:2
|
作者
Aulisa, Eugenio [1 ]
Bloshanskaya, Lidia [1 ,2 ]
Ibragimov, Akif [1 ,2 ]
机构
[1] Texas Tech Univ, Dept Math & Stat Broadway & Boston, Lubbock, TX 79409 USA
[2] SUNY Coll New Paltz, Dept Math, 1 Hawk Dr, New Paltz, NY 12561 USA
来源
关键词
Nonlinear flow; Forchheimer flow; gas flow; compressible fluid; productivity index; CONTINUOUS DEPENDENCE; FORCHHEIMER; BRINKMAN; CONVERGENCE; MODELS; DARCY; FLOWS;
D O I
10.3934/eect.2016.5.1
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
We discuss the notion of the well productivity index (PI) for the generalized Forchheimer flow of fluid through porous media. The PI characterizes the well capacity with respect to drainage area of the well and in general is time dependent. In case of the slightly compressible fluid the PI stabilizes in time to the specific value, determined by the so-called pseudo steady state solution, [5, 3, 4]. Here we generalize our results from [1] in case of arbitrary order of the nonlinearity of the flow. In case of the compressible gas flow the mathematical model of the PI is studied for the first time. In contrast to slightly compressible fluid the PI stays "almost" constant for a long period of time, but then it blows up as time approaches the certain critical value. This value depends on the initial data (initial reserves) of the reservoir. The "greater" are the initial reserves, the larger is this critical value. We present numerical and theoretical results for the time asymptotic of the PI and its stability with respect to the initial data.
引用
收藏
页码:1 / 36
页数:36
相关论文
共 50 条
  • [41] ANALYSIS OF THE CALENDERING OF COMPRESSIBLE FLUIDS
    CHUNG, TS
    JOURNAL OF APPLIED POLYMER SCIENCE, 1983, 28 (06) : 2119 - 2124
  • [42] On the capillary problem for compressible fluids
    Finn, Robert
    Luli, Garving K.
    JOURNAL OF MATHEMATICAL FLUID MECHANICS, 2007, 9 (01) : 87 - 103
  • [43] Compressible generalized Newtonian fluids
    J. Málek
    K. R. Rajagopal
    Zeitschrift für angewandte Mathematik und Physik, 2010, 61 : 1097 - 1110
  • [44] On the well-posedness of an inhomogeneous boundary value problem for the equations of mixtures of viscous compressible fluids
    Zhalnina A.A.
    Kucher N.A.
    Journal of Applied and Industrial Mathematics, 2015, 9 (4) : 598 - 610
  • [45] Well-posedness and time-decay for compressible viscoelastic fluids in critical Besov space
    Jia, Junxiong
    Peng, Jigen
    Mei, Zhandong
    JOURNAL OF MATHEMATICAL ANALYSIS AND APPLICATIONS, 2014, 418 (02) : 638 - 675
  • [46] LIQUIDS AND GASES ARE FLUIDS
    KAUNITZ, J
    JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1965, 193 (12): : 1063 - &
  • [47] The dissipation of gases in fluids
    Rudolph, H
    KOLLOID-ZEITSCHRIFT, 1932, 60 (03): : 308 - 317
  • [48] Aquitard Fluids and Gases
    Clark, Ian D.
    Hendry, M. Jim
    Matray, Jean-Michel
    Solomon, Douglas Kip
    Waber, H. Niklaus
    GEOFLUIDS, 2018,
  • [49] Development of the Material Balance Model to Account for Changes in the Well Productivity Index
    Shevtsov N.O.
    Stepanov S.V.
    Mathematical Models and Computer Simulations, 2022, 14 (5) : 691 - 699
  • [50] Formate Drilling and Completion Fluids: Evaluation of Potential Well-Productivity Impact, Valemon
    Fleming, N.
    Moland, L. G.
    Svanes, G.
    Watson, R.
    Green, J.
    Patey, I.
    Byrne, M.
    Howard, S.
    SPE PRODUCTION & OPERATIONS, 2016, 31 (01): : 22 - 28