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Flash computation and EoS modelling for compositional thermal simulation of flow in porous media

Author: Duncan Paterson
Publisher: Cham, Switzerland : Springer, 2019.
Series: Springer theses.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
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  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Paterson, Duncan.
Flash computation and EoS modelling for compositional thermal simulation of flow in porous media.
Cham, Switzerland : Springer, 2019
(OCoLC)1080246263
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Duncan Paterson
ISBN: 9783030117870 3030117871 9783030117887 303011788X
OCLC Number: 1085890347
Notes: "Doctoral thesis accepted by Technical University of Denmark, Kongens Lyngby, Denmark."
Description: 1 online resource
Contents: Intro; Supervisor's Foreword; Abstract; Preface; References; Parts of this thesis have been published in the following journal articles:; Acknowledgements; Contents; Acronyms/Abbreviations; Symbols; List of Figures; List of Tables; 1 Introduction; 1.1 Classical Thermodynamics; 1.2 Equations of State; 1.3 Phase Equilibria Calculation; 1.4 Oil Reservoir Simulation; References; 2 Model Comparison for Phase Equilibrium in Heavy Oil-/Steam-/Solvent-Related Systems; 2.1 Models Used; 2.2 Experimental Data; 2.3 Regression Method; 2.4 Results and Discussion; 2.4.1 Asymmetric Hydrocarbons 2.4.2 Carbon Dioxide2.4.3 Water; 2.5 Conclusion; References; 3 Multiphase Isenthalpic Flash Using the Conventional Flash Framework; 3.1 Introduction; 3.2 Isenthalpic Flash; 3.2.1 Ideal Solution; 3.2.2 Newton's Method; 3.2.3 Partial Newton; 3.2.4 Q-Function Maximisation; 3.2.5 Thermal Simulation; 3.3 Implementation; 3.3.1 Ideal Solution; 3.3.2 Partial Newton; 3.3.3 Newton's Method; 3.3.4 Q-function Maximisation; 3.4 Results; 3.5 Conclusion; References; 4 Modified RAND Framework for Phase Split Calculations; 4.1 Introduction; 4.2 Modified RAND Formulation 4.2.1 Isothermal Flash Implementation4.2.2 Correction of the Modified RAND Step; 4.3 State Function Constraints; 4.4 Non-PT-Based Thermodynamics Formulations; 4.4.1 Vol-RAND Formulation; 4.4.2 Generalisation to Other State Functions; 4.5 Results; 4.5.1 Comparison of Methods for Phase Split Calculation; 4.5.2 Procedure Correction; 4.5.3 State Function-Based Flash Specification; 4.6 Conclusion; References; 5 EoS-Based Thermal Reservoir Simulation; 5.1 Compositional Reservoir Simulator (COSI); 5.1.1 COSI Description; 5.1.2 Integration of Multiphase Flash and Thermal Effects to COSI; 5.2 Results 5.3 ConclusionsReferences; 6 Conclusions and Future Work; A Tabulated Model Comparison Results and Binary Interaction Parameters for Chapter 2; B Description of Examples Used for Flash Calculations; C Vol-RAND Equations for State Function-Based Flash Specifications
Series Title: Springer theses.
Responsibility: Duncan Paterson.

Abstract:

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  Read more...

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