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Multiphase particulate systems in turbulent flows : fluid-liquid and solid-liquid dispersions

Author: Wioletta Podgorska
Publisher: New York, NY : CRC Press, Taylor & Francis Group, [2020]
Edition/Format:   eBook : Secondary (senior high) school : EnglishView all editions and formats
Summary:
"The book will provide methods necessary to analyze complex particulate systems and related phenomena. Physical, chemical and mathematical description of fundamental processes influencing crystal size and shape, suspension reology, interfacial area of drops and bubbles in extractors and bubble columns will be provided. Examples of mathematical model formulation for different processes taking place in such systems  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Podgorska, Wioletta.
Multiphase particulate systems in turbulent flows
New York, NY : CRC Press, Taylor & Francis Group, 2020.
(DLC) 2019025201
Material Type: Secondary (senior high) school, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Wioletta Podgorska
ISBN: 1315118386 9781482235708 1482235706 9781351644655 1351644653 9781315118383
OCLC Number: 1108787568
Notes: Includes index.
Description: 1 online resource (xvii, 48 pages)
Contents: 1. Introduction2. Population balance equation2.1. Phase space2.2. Number density function2.3. Population balance equation formulation2.4. Birth and death functions2.5. Reduction of the PBE dimension2.6. Generalized population balance equation2.7. Population balance equation solution methods2.8. Comments on particle state random changes3. Very short introduction to fractal geometry4. Turbulence4.1. Turbulence fundamentals4.2. Microstructure of turbulence4.3. Turbulent flow models4.4. Turbulent mixing 5. CFD modeling of multiphase flows5.1. VOF method5.2. Lagrangian-Eulerian approach5.3. Eulerian approach Part II6. Fluid-fluid dispersions - liquid-liquid and gas-liquid systems6.1. Industrial applications of fluid-fluid dispersions6.2. Processes and factors affecting bubble and drop behavior in turbulent flows6.3. Surface active additive and their role in modification of fluid-fluid interfaces6.4. Drop and bubble size distribution measurement methods6.5. Viscosity of fluid-fluid dispersion 6.6. Fluid particle size evolution in turbulent field6.7. Droplet breakage in turbulent field6.8. Fluid particle coalescence6.9. Large-scale inhomogeneity6.10. Phase inversion6.11. Dynamic stabilization of liquid-liquid dispersion6.12. Mass transfer in fluid-fluid systems6.13. Equipment used in fluid-fluid operations 6.14. Eulerian description of liquid-liquid and gas-liquid dispersions - coupling of CFD methods and PBE modelingExercise 6.1Exercise 6.2Exercise 6.3Exercise 6.47. Solid-liquid systems7.1. Crystallization and precipitation fundamentals7.2. Perfectly mixed crystallizers7.3. Ideally mixed batch crystallizers - preferential crystallization7.4. Precipitation process in Lagrangian framework - mechanistic model of mixing dependent precipitation7.5. Precipitation process in Eulerian framework - closure problem7.6. Aggregation7.7. Break-up of compact particles and aggregates7.8. Particle precipitation in droplets7.9. Multivariate population balance equation7.10. Biological systems - selected problemsExercise 7.1Exercise 7.2Exercise 7.3Exercise 7.4
Responsibility: authored by Wioletta Podgorska.

Abstract:

"The book will provide methods necessary to analyze complex particulate systems and related phenomena. Physical, chemical and mathematical description of fundamental processes influencing crystal size and shape, suspension reology, interfacial area of drops and bubbles in extractors and bubble columns will be provided. Examples of mathematical model formulation for different processes taking place in such systems will be shown. Connections between turbulent mixing mechanism and precipitation will be discussed. The influence of fine-scale structure of turbulence, including its intermittent character, on breakage of drops, bubbles, cells, plant cell aggregates will be considered. Important aspect of the mathematical modeling presented in the book is multifractal approach applied to take into account the influence of internal intermittency on different phenomena"--

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