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Engineering - Computational Intelligence and Complexity | Modeling Multiphase Materials Processes - Gas-Liquid Systems

Modeling Multiphase Materials Processes

Gas-Liquid Systems

Iguchi, Manabu, Ilegbusi, Olusegun J.

2011, X, 413 p.

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  • Focuses exclusively on multi-phase flows in materials processes
  • Includes numerous examples of multi-phase phenomena
  • Presents both mathematical and physical modeling techniques applicable to multi-phase phenomena
  • Describes multiphase flows in micro-scale and nano-scale channels and reactors
Modeling Multiphase Materials Processes: Gas-Liquid Systems describes the methodology and application of physical and mathematical modeling to multi-phase flow phenomena in materials processing. The book focuses on systems involving gas-liquid interaction, the most prevalent in current metallurgical processes. The performance characteristics of these processes are largely dependent on transport phenomena. This volume covers the inherent characteristics that complicate the modeling of transport phenomena in such systems, including complex multiphase structure, intense turbulence, opacity of fluid, high temperature, coupled heat and mass transfer, chemical reactions in some cases, and poor wettability of the reactor walls. Also discussed are: -Solutions based on experimental and numerical modeling of bubbling jet systems -Recent advances in the modeling of nanoscale multi-phase phenomena -Multiphase flows in micro-scale and nano-scale channels and reactors Modeling Multiphase Materials Processes: Gas-Liquid Systems will prove a valuable reference for researchers and engineers working in mathematical modeling and materials processing.

Content Level » Research

Keywords » Gas-Liquid Materials Processes - Metallurgical Reactors - Nanoscale Multiphase Phenomena - Surface Flow Control - Two-Phase Flow

Related subjects » Computational Intelligence and Complexity - Mechanical Engineering - Surfaces, Interfaces, Thin Films, Corrosion, Coatings

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