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27.01.2024
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Multi-phase flows are part of our natural environment such as tornadoes, typhoons, air and water pollution and volcanic activities as well as part of industrial technology such as power plants, combustion engines, propulsion systems, or chemical and biological industry. The industrial use of multi-phase systems requires analytical and numerical strategies for predicting their behavior. In its third extended edition this book contains theory, methods and practical experience for describing complex transient multi-phase processes in arbitrary geometrical configurations. This book provides a systematic presentation of the theory and practice of numerical multi-phase fluid dynamics. In the present second volume the mechanical and thermal interactions in multiphase dynamics are provided. This third edition includes various updates, extensions, improvements and corrections.




Multi-phase flows are part of our natural environment such as tornadoes, typhoons, air and water pollution and volcanic activities as well as part of industrial technology such as power plants, combustion engines, propulsion systems, or chemical and biological industry. The industrial use of multi-phase systems requires analytical and numerical strategies for predicting their behavior. In its third extended edition this book contains theory, methods and practical experience for describing complex transient multi-phase processes in arbitrary geometrical configurations. This book provides a systematic presentation of the theory and practice of numerical multi-phase fluid dynamics. In the present second volume the mechanical and thermal interactions in multiphase dynamics are provided. This third edition includes various updates, extensions, improvements and corrections.


Content:
Front Matter....Pages I-XX
Flow regime transition criteria....Pages 1-26
Drag forces....Pages 27-70
Friction pressure drop....Pages 71-87
Diffusion velocities for algebraic slip models....Pages 89-132
Entrainment in annular two-phase flow....Pages 133-151
Deposition in annular two-phase flow....Pages 153-165
Introduction to fragmentation and coalescence....Pages 167-187
Acceleration induced droplet and bubble fragmentation....Pages 189-235
Turbulence induced particle fragmentation and coalescence....Pages 237-261
Liquid and gas jet disintegration....Pages 263-287
Fragmentation of melt in coolant....Pages 289-339
Nucleation in liquids....Pages 341-373
Bubble growth in superheated liquid....Pages 375-397
Condensation of a pure steam bubble in a subcooled liquid....Pages 399-420
Bubble departure diameter....Pages 421-437
How accurately can we predict nucleate boiling?....Pages 439-466
Heterogeneous nucleation and flashing in adiabatic pipes....Pages 467-487
Boiling of subcooled liquid....Pages 489-497
Natural convection film boiling....Pages 499-504
Forced convection boiling....Pages 505-525
Film boiling on vertical plates and spheres....Pages 527-568
Liquid droplets....Pages 569-603
Heat and mass transfer at the film-gas interface....Pages 605-630
Condensation at cooled walls....Pages 631-643
Discrete ordinate method for radiation transport in multi-phase computer codes....Pages 645-689
Back Matter....Pages 691-699


Multi-phase flows are part of our natural environment such as tornadoes, typhoons, air and water pollution and volcanic activities as well as part of industrial technology such as power plants, combustion engines, propulsion systems, or chemical and biological industry. The industrial use of multi-phase systems requires analytical and numerical strategies for predicting their behavior. In its third extended edition this book contains theory, methods and practical experience for describing complex transient multi-phase processes in arbitrary geometrical configurations. This book provides a systematic presentation of the theory and practice of numerical multi-phase fluid dynamics. In the present second volume the mechanical and thermal interactions in multiphase dynamics are provided. This third edition includes various updates, extensions, improvements and corrections.


Content:
Front Matter....Pages I-XX
Flow regime transition criteria....Pages 1-26
Drag forces....Pages 27-70
Friction pressure drop....Pages 71-87
Diffusion velocities for algebraic slip models....Pages 89-132
Entrainment in annular two-phase flow....Pages 133-151
Deposition in annular two-phase flow....Pages 153-165
Introduction to fragmentation and coalescence....Pages 167-187
Acceleration induced droplet and bubble fragmentation....Pages 189-235
Turbulence induced particle fragmentation and coalescence....Pages 237-261
Liquid and gas jet disintegration....Pages 263-287
Fragmentation of melt in coolant....Pages 289-339
Nucleation in liquids....Pages 341-373
Bubble growth in superheated liquid....Pages 375-397
Condensation of a pure steam bubble in a subcooled liquid....Pages 399-420
Bubble departure diameter....Pages 421-437
How accurately can we predict nucleate boiling?....Pages 439-466
Heterogeneous nucleation and flashing in adiabatic pipes....Pages 467-487
Boiling of subcooled liquid....Pages 489-497
Natural convection film boiling....Pages 499-504
Forced convection boiling....Pages 505-525
Film boiling on vertical plates and spheres....Pages 527-568
Liquid droplets....Pages 569-603
Heat and mass transfer at the film-gas interface....Pages 605-630
Condensation at cooled walls....Pages 631-643
Discrete ordinate method for radiation transport in multi-phase computer codes....Pages 645-689
Back Matter....Pages 691-699
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