Mathematics in oil production : based on the proceedings of a conference organized by the Institute of Mathematics and its Applications on mathematics in oil production, held in Robinson College, Cambridge, in July 1987

書誌事項

Mathematics in oil production : based on the proceedings of a conference organized by the Institute of Mathematics and its Applications on mathematics in oil production, held in Robinson College, Cambridge, in July 1987

edited by Sir Sam Edwards and P.R. King

(The Institute of Mathematics and its Applications conference series, new ser. ; 18)

Clarendon Press , Oxford University Press, 1988

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注記

Includes bibliographical references

内容説明・目次

内容説明

Questions which confront engineers in their daily practice, such as how two or three fluid phases move together, and what relationships exist between flows in porous and fractured materials, lead to difficult mathematical problems which can be explored and developed. Mathematical and computational advances increase the practitioner's understanding and increase hopes of better efficiency and lower costs for oil and gas production. Based on the proceedings of a conference organized by the IMA, held in Cambridge in July 1987, this book covers recent developments in non-linear mathematics and electronic computers which have led to substantial advances in the field of fluid mechanics and related transport phenomena.

目次

  • An introduction to some of the mathematical and physical problems of modelling oil displacement in porous media, F.J.Fayers
  • modelling of phase behaviour in chemical flood simulation, R.W.S.Foulse
  • high accuracy solutions for two phase multicomponent flow in porous media, K.S.Sorbie and L.J.Roberts
  • review of the stochastic nature of reservoirs, H.H.Haldorsen et al
  • stochastic simulation and viscous fingering, R.C.Ball
  • effective values in averaging, P.R.King
  • the generation of stochastic fields of reservoir parameters with specified geostatistical distributions, C.L.Farmer
  • advanced numerical techniques for reservoir simulation and their use on vector and parallel processors, I.M.Cheshire and R.K.Pollard
  • application of high resolution simulation to modelling fluid instabilities, M.A.Christie
  • discretization techniques for multiphase flow, D.Waldren
  • adaptive local mesh refinement and multi-grid solution methods in numerical reservoir simulation, G.H.Schmidt and F.J.Jacobs
  • the recovery of oil from underground reservoirs, E.J.Hinch
  • fluid dynamics at pore scale, D.Wilkinson
  • the numerical simulation of hydrodynamic dispersion, J.Koplik.

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