Muutke küpsiste eelistusi

Numerical Methods for Processes in Fractured Porous Media 2019 ed. [Pehme köide]

Edited by , Edited by , Edited by , Edited by , Edited by
  • Formaat: Paperback / softback, 370 pages, kõrgus x laius: 235x155 mm, kaal: 581 g, 1 Illustrations, black and white; X, 370 p. 1 illus., 1 Paperback / softback
  • Sari: Lecture Notes in Geosystems Mathematics and Computing
  • Ilmumisaeg: 21-Aug-2019
  • Kirjastus: Springer Nature Switzerland AG
  • ISBN-10: 303026940X
  • ISBN-13: 9783030269401
  • Pehme köide
  • Hind: 81,12 €*
  • * hind on lõplik, st. muud allahindlused enam ei rakendu
  • Tavahind: 95,44 €
  • Säästad 15%
  • Raamatu kohalejõudmiseks kirjastusest kulub orienteeruvalt 2-4 nädalat
  • Kogus:
  • Lisa ostukorvi
  • Tasuta tarne
  • Tellimisaeg 2-4 nädalat
  • Lisa soovinimekirja
  • Formaat: Paperback / softback, 370 pages, kõrgus x laius: 235x155 mm, kaal: 581 g, 1 Illustrations, black and white; X, 370 p. 1 illus., 1 Paperback / softback
  • Sari: Lecture Notes in Geosystems Mathematics and Computing
  • Ilmumisaeg: 21-Aug-2019
  • Kirjastus: Springer Nature Switzerland AG
  • ISBN-10: 303026940X
  • ISBN-13: 9783030269401
This volume collects state-of-the-art contributions on the numerical simulation of fractured porous media, focusing on flow and geomechanics. First appearing in issues of the International Journal on Geomathematics, these articles are now conveniently packaged in one volume. Of particular interest to readers will be the potential applications of modern numerical methods to the problem of processes in fractured porous media. This book is ideal for computational scientists and numerical analysts interested in recent developments of numerical discretization techniques for underground flow and geomechanics. Engineers and geologists studying modern simulation techniques will also find this a valuable resource.
A stabilized Lagrange multiplier finite-element method for flow in
porous media with fractures.- A cut finite element method for elliptic bulk
problems with embedded surfaces.- A Hybrid High-Order method for passive
transport in fractured porous media.- Advanced computation of steady-state
fluid flow in Discrete Fracture-Matrix models: FEMBEM and VEMVEM
fracture-block coupling.- Two-phase Discrete Fracture Matrix models with
linear and nonlinear transmission conditions.- A hybrid-dimensional discrete
fracture model for non-isothermal two-phase flow in fractured porous media.-
Mathematical analysis, finite element approximation and numerical solvers for
the interaction of 3D reservoirs with 1D wells.- Fast and robust flow
simulations in discrete fracture networks with GPGPUs.- Flow and transport in
fractured poroelastic media.- Phase-field modeling through iterative
splitting of hydraulic fractures in a poroelastic medium.- Numerical aspects
of hydro-mechanical coupling of fluid-filled fractures using
hybrid-dimensional element formulations and non-conformal meshes.-
Comparative verification of discrete and smeared numerical approaches for the
simulation of hydraulic fracturing.