109,16 €
121,29 €
-10% with code: EXTRA
Pore Scale Simulation of Three-Phase Flow
Pore Scale Simulation of Three-Phase Flow
109,16
121,29 €
  • We will send in 10–14 business days.
Pore-scale modelling that combines an accurate description of the pore space with a detailed analysis of pore-scale displacement physics is a useful tool for understanding multiphase flow in porous media. From a practical perspective it can be used to make predictions for situations that are difficult to study experimentally. The study here shows that even for rather complex displacements this approach is able to make accurate predictions while revealing the subtlety of the influence of pore-sc…
  • Publisher:
  • ISBN-10: 3639097866
  • ISBN-13: 9783639097863
  • Format: 15.2 x 22.9 x 0.9 cm, softcover
  • Language: English
  • SAVE -10% with code: EXTRA

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Pore-scale modelling that combines an accurate description of the pore space with a detailed analysis of pore-scale displacement physics is a useful tool for understanding multiphase flow in porous media. From a practical perspective it can be used to make predictions for situations that are difficult to study experimentally. The study here shows that even for rather complex displacements this approach is able to make accurate predictions while revealing the subtlety of the influence of pore-scale displacement on macroscopic behaviour.

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  • Author: Vural Suicmez
  • Publisher:
  • ISBN-10: 3639097866
  • ISBN-13: 9783639097863
  • Format: 15.2 x 22.9 x 0.9 cm, softcover
  • Language: English English

Pore-scale modelling that combines an accurate description of the pore space with a detailed analysis of pore-scale displacement physics is a useful tool for understanding multiphase flow in porous media. From a practical perspective it can be used to make predictions for situations that are difficult to study experimentally. The study here shows that even for rather complex displacements this approach is able to make accurate predictions while revealing the subtlety of the influence of pore-scale displacement on macroscopic behaviour.

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