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A first course on basic elements of heat flow in nanoporous fabrics /

Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Haghi, A. K.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: New York : Nova Science Publishers, ©2012.
Colección:Nanotechnology science and technology series.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • A FIRST COURSE ON BASIC ELEMENTS OF HEAT FLOW IN NANOPOROUS FABRICS ; A FIRST COURSE ON BASIC ELEMENTS OF HEAT FLOW IN NANOPOROUS FABRICS ; LIBRARY OF CONGRESS CATALOGING-IN-PUBLICATION DATA ; CONTENTS ; PREFACE ; ABOUT THE AUTHOR; NOMENCLATURE ; Greek Symbols ; Subscripts ; Superscripts ; Chapter 1 BASIC CONCEPTS ; 1.1. INTRODUCTION ; 1.2. HEAT ; 1.3. CONVECTION HEAT TRANSFER; 1.4. CONDUCTION HEAT TRANSFER ; 1.5. RADIATION HEAT TRANSFER ; 1.6. COMBINED HEAT TRANSFER COEFFICIENT ; 1.7. POROSITY AND PORE SIZE DISTRIBUTION IN FABRIC; 1.8. THERMAL EQUILIBRIUM AND COMFORT.
  • 1.9. MOISTURE IN FIBERS REFERENCE ; Chapter 2 CONVECTIVE HEAT FLOW ; 2.1. INTRODUCTION ; 2.2. EFFECT OF HUMIDITY ON THE DRYING RATE; 2.2.1. Constant Rate Period and Falling Rate Period ; 2.3. CONVECTIVE HEAT TRANSFER RATE ; 2.4. EQUILIBRIUM MOISTURE CONTENT ; 2.5. INVERSION TEMPERATURE; 2.6. MASS TRANSFER ; 2.7. DRY AIR AND SUPERHEATED STEAM ; 2.8. HEAT SETTING PROCESS ; 2.9. CONVECTIVE HEAT AND MASS TRANSFER COEFFICIENTS ; 2.10. CONVECTIVE DRYING OF TEXTILE MATERIAL: SIMPLE CASE ; 2.10.1. Capillary Flow of Free Water ; 2.10.2. Movement of Bound Water ; 2.10.3. Vapor Flow.
  • 2.11. MACROSCOPIC EQUATIONS GOVERNING HEAT FLOW IN TEXTILE MATERIAL 2.11.1. Generalized Darcy's Law ; 2.11.2. Mass Conservation Equations ; 2.11.3. Energy Conservation Equation ; 2.11.4. Thermodynamic Relations ; 2.12. HEAT AND MASS TRANSFER OF TEXTILE FABRICS IN THE STENTER ; REFERENCES ; Chapter 3 CONDUCTIVE HEAT FLOW ; 3.1. INTRODUCTION ; 3.2. FIRST LAW OF THERMODYNAMICS; 3.3. SECOND LAW OF THERMODYNAMICS ; 3.4. HEAT CONDUCTION AND THERMAL CONDUCTIVITY ; 3.5. THERMAL CONDUCTION MECHANISMS ; 3.6. MASS DIFFUSION AND DIFFUSIVITY ; 3.7. CONDUCTION HEAT TRANSFER IN TEXTILE FABRIC.
  • 5.6. MOISTURE TRANSFER IN TEXTILES 5.7. WATER VAPOR SORPTION MECHANISM IN FABRICS ; 5.8. MODELING ; REFERENCES ; APPENDIX ; HEAT TRANSFER ; MASS TRANSFER ; DRYING OF TEXTILES ; STEADY STATE HEAT TRANSFER ; CONVECTIVE HEAT-TRANSFER COEFFICIENT ; DIMENSIONLESS NUMBERS IN CONVECTIVE HEAT TRANSFER ; RADIATION HEAT TRANSFER ; COMBINING RADIATION AND CONVECTION HEAT TRANSFER ; CONDUCTIVE HEAT TRANSFER ; GENERAL CONCEPTS ; DRYING OF POROUS NANOSTRUCTURE FABRICS ; CONVECTION HEAT FLOW IN POROUS MEDIA ; CONDUCTION HEAT FLOW IN POROUS MATERIALS ; RADIATION HEAT FLOW IN POROUS SOLIDS.