Simulation of Multiphase Flow in Subsurface Porous Media for Low-Carbon Energy Systems
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This reference presents six major pore-scale simulation approaches used to investigate multiphase flow in porous media, including molecular dynamics, lattice Boltzmann methods, pore network modeling, and computational fluid dynamics. It examines the fundamental physics governing wettability, capillary forces, interfacial interactions, and transport processes while comparing the capabilities, assumptions, and limitations of each method. Case studies, flowcharts, and visual summaries demonstrate practical modeling workflows and interpretation of simulation results.
Simulation of Multiphase Flow in Subsurface Porous Media for Low-Carbon Energy Systems serves as a valuable reference for researchers, engineers, and graduate students working in subsurface energy and environmental systems. By linking pore-scale mechanisms to macroscopic properties such as relative permeability and capillary pressure, the book provides actionable insights for model selection, uncertainty reduction, and decision-making in low-carbon energy applications.
- Synthesizes six leading pore-scale simulation methods for subsurface low-carbon energy applications
- Explains method selection through comparisons of capabilities, assumptions, and limitations
- Demonstrates reproducible workflows using case studies, flowcharts, and visual abstracts
- Quantifies relative permeability, capillary pressure, and transport characteristics from pore-scale simulations
- Supports carbon storage, hydrogen storage, and geothermal energy analyses with practical examples
Produktinformation
- Utgivningsdatum2027-02-01
- Mått152 x 229 x undefined mm
- Vikt450 g
- FormatHäftad
- SpråkEngelska
- Antal sidor375
- FörlagElsevier Science
- ISBN9780443542312