Flash Computation and EoS Modelling for Compositional Thermal Simulation of Flow in Porous Media - Duncan Paterson

Flash Computation and EoS Modelling for Compositional Thermal Simulation of Flow in Porous Media

(Autor)

Buch | Hardcover
XXXV, 186 Seiten
2019 | 1st ed. 2019
Springer International Publishing (Verlag)
978-3-030-11786-3 (ISBN)
106,99 inkl. MwSt

This book investigates a wide range of phase equilibrium modelling and calculation problems for compositional thermal simulation. Further, it provides an effective solution for multiphase isenthalpic flash under the classical framework, and it also presents a new flash calculation framework for multiphase systems, which can handle phase equilibrium and chemical reaction equilibrium simultaneously. The framework is particularly suitable for systems with many phases and reactions.

In this book, the author shows how the new framework can be generalised for different flash specifications and different independent variables. Since the flash calculation is at the heart of various types of compositional simulation, the findings presented here will promote the combination of phase equilibrium and chemical equilibrium calculations in future simulators, aiming at improving their robustness and efficiency.

Introduction.- Model Comparison for Phase Equilibrium in Heavy Oil/Steam/Solvent Related Systems.- Multiphase Isenthalpic Flash using the Conventional Flash Framework.- Modified RAND Framework for Phase Split Calculations.- EoS Based Thermal Reservoir Simulation.- Conclusions and Future Work.

Erscheinungsdatum
Reihe/Serie Springer Theses
Zusatzinfo XXXV, 186 p. 62 illus., 52 illus. in color.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Gewicht 502 g
Themenwelt Naturwissenschaften Chemie Technische Chemie
Technik
Schlagworte Chemical Reaction Equilibrium • Compositional Reservoir Simulation • Computational Thermodynamics • Heavy Oil Production • Isenthalpic Flash • Newton's method • Phase Equilibrium Calculations • RAND Formulation • Thermal Reservoir Simulation • Thermodynamic Model Comparison
ISBN-10 3-030-11786-3 / 3030117863
ISBN-13 978-3-030-11786-3 / 9783030117863
Zustand Neuware
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