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Solid fuels combustion and gasification

Author: Marcio L de Souza-Santos
Publisher: New York : Marcel Dekker, ©2004.
Series: Mechanical engineering, 174
Edition/Format:   eBook : Document : EnglishView all editions and formats

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Genre/Form: Online-Publikation
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Marcio L de Souza-Santos
ISBN: 0203027299 9780203027295
OCLC Number: 645592228
Description: 1 online resource (xxv, 439 p.) : ill.
Contents: Basic Remarks on Modeling and Simulation Experiment and Simulation A Classification for Mathematical Models Exercises Solid Fuels Introduction Physical Properties Chemical Properties Thermal Treatment Gasification and Combustion Exercises Equipment and Processes Introduction Elements of Gas-Solid Systems Moving Bed Fluidized Bed Suspension or Pneumatic Transport Some Aspects Related to Fuels Basic Calculations Introduction Computation of Some Basic Parameters Tips on Calculations Observations Exercises Zero-Dimensional Models Introduction Basic Equations Species Balance and Exiting Composition Useful Relations Summary for 0D-S Model Flame Temperature Exercises Introduction to One-Dimensional, Steady-State Models Definitions Fundamental Equations Final Comments Exercises Moving-Bed Combustion and Gasification Model Introduction The Model Exercises Chemical Reactions Homogeneous/Heterogeneous Reactions Numbering of Chemical Components A System of Chemical Reactions Stoichiometry Kinetics Final Notes Exercises Heterogeneous Reactions Introduction General Form of the Problem Generalized Treatment Other Heterogeneous Reactions Exercises Drying and Devolatilization Drying Devolatilization Exercises Auxiliary Equations and Basic Calculations Introduction Total Production Rates Thiele Modulus Diffusivities Reactivity Core Dimensions Heat and Mass Transfer Coefficients Energy-Related Parameters A Few Immediate Applications Pressure Losses Exercises Moving-Bed Simulation Program and Results Introduction From Modeling to Simulation Program Samples of Results Exercises Fluidized-Bed Combustion and Gasification Model Introduction The Mathematical Model Boundary Conditions Exercises Fluidization Dynamics Introduction Splitting of Gas Injected into a Bed Bubble Characteristics and Behavior Circulation of Solid Particles Entrainment and Elutriation Particle Size Distribution Recycling of Particles Segregation Areas and Volumes at Freeboard Section Mass and Volume Fractions of Solids Further Studies Exercises Auxiliary Parameters Related to Fluidized-Bed Processes Introduction Mass Transfers Heat Transfers Parameters Related to Reaction Rates Fluidized-Bed Simulation Program and Results The Block Diagram Samples of Results Exercises Appendix A: The Fundamental Equations of Transport Phenomena Appendix B: Notes on Thermodynamics Heat and Work Chemical Equilibrium Equation Specific Heat Correction for Departure from Ideal Behavior Generalized 0D-S Models Heat Values Representative Formation Enthalpy of a Solid Fuel Appendix C: Possible Improvements on Modeling Heterogeneous Reactions General Mass Balance for a Particle Generalized Energy Balance for a Particle Appendix D: Improvements on Various Aspects Rate of Particles Circulation in the Fluidized Bed Improvements on the Fluidized-Bed Equipment Simulator (FBES) Appendix E: Basics of Turbulent Flow Momentum Transfer Heat and Mass Transfers Reaction Kinetics Appendix F: Classifications of Modeling for Bubbling Fluidized-Bed Equipment Main Aspects Appendix G: Basic Techniques of Kinetics Determination References Index
Series Title: Mechanical engineering, 174
Responsibility: Marcio L. de Souza-Santos.


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