Heat transfer: a systematic learning approach
Heat Transfer: A Systematic Learning Approach presents valuable tools in understanding heat transfer mechanisms and provides a clear understanding of complex turbulent flows. It provides a comprehensive introduction to topics of heat transfer, including conduction, convection, thermal radiation, and...
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1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Boca Raton ; Londo ; New York
CRC Press
2024
|
Ausgabe: | First edition |
Schlagworte: | |
Online-Zugang: | DE-1050 |
Zusammenfassung: | Heat Transfer: A Systematic Learning Approach presents valuable tools in understanding heat transfer mechanisms and provides a clear understanding of complex turbulent flows. It provides a comprehensive introduction to topics of heat transfer, including conduction, convection, thermal radiation, and nanofluids |
Beschreibung: | 1 Online-Ressource (xxiii, 511 Seiten) |
ISBN: | 9781003804093 |
Internformat
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505 | 8 | |a Cover -- Half Title -- Title Page -- Copyright Page -- Dedication -- Contents -- Nomenclature -- Author -- Prologue -- Chapter 1: Heat Transfer -- 1.1. Heat Transfer -- a Historical Perspective -- 1.2. Energies in Thermodynamics -- 1.3. First Law of Thermodynamics -- 1.4. Types of Heat -- 1.5. Volumetric Heat Capacity -- 1.6. Modes of Heat Transfer -- 1.6.1. Conduction -- 1.6.2. Convection -- 1.6.3. Radiation -- References -- Chapter 2: Heat Conduction Equation -- 2.1. Three-Dimensional Heat Conduction Equation -- 2.2. Some Common Boundary Conditions -- 2.2.1. Dirichlet Boundary Condition | |
505 | 8 | |a 2.2.2. Neumann Boundary Condition -- 2.2.3. Robin Boundary Condition -- 2.3. Scale Analysis for Heat Transfer Problems -- References -- Chapter 3: Steady-State One-Dimensional Heat Conduction -- 3.1. Conduction through Plane Wall -- 3.2. Analogy between Heat Transfer and Current Flow -- 3.3. Multilayer Wall -- 3.4. Overall Heat Transfer Coefficient -- 3.5. Heat Transfer through a Hollow Cylinder -- 3.6. Heat Transfer through a Hollow Sphere -- 3.7. Heat Conduction through Composite Pipe or Sphere -- 3.8. The Concept of Critical Radius -- 3.9. Variable Thermal Conductivity -- 3.9.1. Plane Wall | |
505 | 8 | |a 3.9.2. Thermal Conductivity Variation in a Cylinder -- 3.10. Thermal Contact Resistance -- 3.11. Conduction with Internal Energy Conversion into Internal Energy -- 3.12. Heat Transfer by Extended Surfaces -- 3.12.1. Infinitely Long Fin -- 3.12.2. Fin Insulated at End -- 3.13. Efficiency and Effectiveness of Fin -- 3.14. Corrected Fin Length -- References -- Chapter 4: Steady-State Two-Dimensional Heat Conduction -- 4.1. Infinite Strip Case -- 4.2. Conduction Shape Factor (CSF) -- References -- Chapter 5: Transient Heat Conduction -- 5.1. One-Dimensional Unsteady Heat Conduction (Bi<0.1) | |
505 | 8 | |a 5.2. Semi-Infinite Solid with Different Boundary Conditions -- 5.2.1. Semi-Infinite Plane Wall: Constant Wall Temperature -- 5.2.2. Semi-Infinite Solid: Heat Flux Boundary Condition -- 5.2.3. Semi-Infinite Solid: Convection Boundary Condition -- 5.2.4. Semi-Infinite Solid: Energy Pulse Boundary Condition -- 5.3. Transient Conduction inside a Large Slab with Convective Cooling -- 5.4. Transient Conduction through a Long Cylinder with Convective Cooling -- 5.5. Transient Heat Conduction through a Sphere with Convective Cooling -- References | |
505 | 8 | |a Chapter 6: Heat Conduction Analysis Using the Finite Difference Technique -- 6.1. Finite Difference Method -- 6.2. 1D Steady Conduction -- 6.3. 2D Conduction -- 6.4. 2D Conduction with Internal Heat Conversion -- 6.5. Numerical Transient Conduction -- 6.6. Convective Boundary Condition -- 6.7. 1D Transient Conduction: Implicit Formulation -- 6.8. 2D Transient Conduction -- References -- Chapter 7: Fundamentals of Convective Heat Transfer -- 7.1. Forced Convection and Dimensionless Parameters -- 7.2. Free Convection and Dimensionless Parameters | |
520 | |a Heat Transfer: A Systematic Learning Approach presents valuable tools in understanding heat transfer mechanisms and provides a clear understanding of complex turbulent flows. It provides a comprehensive introduction to topics of heat transfer, including conduction, convection, thermal radiation, and nanofluids | ||
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Datensatz im Suchindex
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author | Uddin, Naseem |
author_GND | (DE-588)136385095 |
author_facet | Uddin, Naseem |
author_role | aut |
author_sort | Uddin, Naseem |
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contents | Cover -- Half Title -- Title Page -- Copyright Page -- Dedication -- Contents -- Nomenclature -- Author -- Prologue -- Chapter 1: Heat Transfer -- 1.1. Heat Transfer -- a Historical Perspective -- 1.2. Energies in Thermodynamics -- 1.3. First Law of Thermodynamics -- 1.4. Types of Heat -- 1.5. Volumetric Heat Capacity -- 1.6. Modes of Heat Transfer -- 1.6.1. Conduction -- 1.6.2. Convection -- 1.6.3. Radiation -- References -- Chapter 2: Heat Conduction Equation -- 2.1. Three-Dimensional Heat Conduction Equation -- 2.2. Some Common Boundary Conditions -- 2.2.1. Dirichlet Boundary Condition 2.2.2. Neumann Boundary Condition -- 2.2.3. Robin Boundary Condition -- 2.3. Scale Analysis for Heat Transfer Problems -- References -- Chapter 3: Steady-State One-Dimensional Heat Conduction -- 3.1. Conduction through Plane Wall -- 3.2. Analogy between Heat Transfer and Current Flow -- 3.3. Multilayer Wall -- 3.4. Overall Heat Transfer Coefficient -- 3.5. Heat Transfer through a Hollow Cylinder -- 3.6. Heat Transfer through a Hollow Sphere -- 3.7. Heat Conduction through Composite Pipe or Sphere -- 3.8. The Concept of Critical Radius -- 3.9. Variable Thermal Conductivity -- 3.9.1. Plane Wall 3.9.2. Thermal Conductivity Variation in a Cylinder -- 3.10. Thermal Contact Resistance -- 3.11. Conduction with Internal Energy Conversion into Internal Energy -- 3.12. Heat Transfer by Extended Surfaces -- 3.12.1. Infinitely Long Fin -- 3.12.2. Fin Insulated at End -- 3.13. Efficiency and Effectiveness of Fin -- 3.14. Corrected Fin Length -- References -- Chapter 4: Steady-State Two-Dimensional Heat Conduction -- 4.1. Infinite Strip Case -- 4.2. Conduction Shape Factor (CSF) -- References -- Chapter 5: Transient Heat Conduction -- 5.1. One-Dimensional Unsteady Heat Conduction (Bi<0.1) 5.2. Semi-Infinite Solid with Different Boundary Conditions -- 5.2.1. Semi-Infinite Plane Wall: Constant Wall Temperature -- 5.2.2. Semi-Infinite Solid: Heat Flux Boundary Condition -- 5.2.3. Semi-Infinite Solid: Convection Boundary Condition -- 5.2.4. Semi-Infinite Solid: Energy Pulse Boundary Condition -- 5.3. Transient Conduction inside a Large Slab with Convective Cooling -- 5.4. Transient Conduction through a Long Cylinder with Convective Cooling -- 5.5. Transient Heat Conduction through a Sphere with Convective Cooling -- References Chapter 6: Heat Conduction Analysis Using the Finite Difference Technique -- 6.1. Finite Difference Method -- 6.2. 1D Steady Conduction -- 6.3. 2D Conduction -- 6.4. 2D Conduction with Internal Heat Conversion -- 6.5. Numerical Transient Conduction -- 6.6. Convective Boundary Condition -- 6.7. 1D Transient Conduction: Implicit Formulation -- 6.8. 2D Transient Conduction -- References -- Chapter 7: Fundamentals of Convective Heat Transfer -- 7.1. Forced Convection and Dimensionless Parameters -- 7.2. Free Convection and Dimensionless Parameters |
ctrlnum | (OCoLC)1422442347 (DE-599)BVBBV049521239 |
discipline | Physik |
edition | First edition |
format | Electronic eBook |
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id | DE-604.BV049521239 |
illustrated | Not Illustrated |
index_date | 2024-07-03T23:25:03Z |
indexdate | 2025-01-10T17:13:59Z |
institution | BVB |
isbn | 9781003804093 |
language | English |
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owner | DE-1050 |
owner_facet | DE-1050 |
physical | 1 Online-Ressource (xxiii, 511 Seiten) |
psigel | ZDB-30-PQE ZDB-30-PQE FHD01_PQE_Kauf |
publishDate | 2024 |
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spelling | Uddin, Naseem Verfasser (DE-588)136385095 aut Heat transfer a systematic learning approach Naseem Uddin First edition Boca Raton ; Londo ; New York CRC Press 2024 1 Online-Ressource (xxiii, 511 Seiten) txt rdacontent c rdamedia cr rdacarrier Cover -- Half Title -- Title Page -- Copyright Page -- Dedication -- Contents -- Nomenclature -- Author -- Prologue -- Chapter 1: Heat Transfer -- 1.1. Heat Transfer -- a Historical Perspective -- 1.2. Energies in Thermodynamics -- 1.3. First Law of Thermodynamics -- 1.4. Types of Heat -- 1.5. Volumetric Heat Capacity -- 1.6. Modes of Heat Transfer -- 1.6.1. Conduction -- 1.6.2. Convection -- 1.6.3. Radiation -- References -- Chapter 2: Heat Conduction Equation -- 2.1. Three-Dimensional Heat Conduction Equation -- 2.2. Some Common Boundary Conditions -- 2.2.1. Dirichlet Boundary Condition 2.2.2. Neumann Boundary Condition -- 2.2.3. Robin Boundary Condition -- 2.3. Scale Analysis for Heat Transfer Problems -- References -- Chapter 3: Steady-State One-Dimensional Heat Conduction -- 3.1. Conduction through Plane Wall -- 3.2. Analogy between Heat Transfer and Current Flow -- 3.3. Multilayer Wall -- 3.4. Overall Heat Transfer Coefficient -- 3.5. Heat Transfer through a Hollow Cylinder -- 3.6. Heat Transfer through a Hollow Sphere -- 3.7. Heat Conduction through Composite Pipe or Sphere -- 3.8. The Concept of Critical Radius -- 3.9. Variable Thermal Conductivity -- 3.9.1. Plane Wall 3.9.2. Thermal Conductivity Variation in a Cylinder -- 3.10. Thermal Contact Resistance -- 3.11. Conduction with Internal Energy Conversion into Internal Energy -- 3.12. Heat Transfer by Extended Surfaces -- 3.12.1. Infinitely Long Fin -- 3.12.2. Fin Insulated at End -- 3.13. Efficiency and Effectiveness of Fin -- 3.14. Corrected Fin Length -- References -- Chapter 4: Steady-State Two-Dimensional Heat Conduction -- 4.1. Infinite Strip Case -- 4.2. Conduction Shape Factor (CSF) -- References -- Chapter 5: Transient Heat Conduction -- 5.1. One-Dimensional Unsteady Heat Conduction (Bi<0.1) 5.2. Semi-Infinite Solid with Different Boundary Conditions -- 5.2.1. Semi-Infinite Plane Wall: Constant Wall Temperature -- 5.2.2. Semi-Infinite Solid: Heat Flux Boundary Condition -- 5.2.3. Semi-Infinite Solid: Convection Boundary Condition -- 5.2.4. Semi-Infinite Solid: Energy Pulse Boundary Condition -- 5.3. Transient Conduction inside a Large Slab with Convective Cooling -- 5.4. Transient Conduction through a Long Cylinder with Convective Cooling -- 5.5. Transient Heat Conduction through a Sphere with Convective Cooling -- References Chapter 6: Heat Conduction Analysis Using the Finite Difference Technique -- 6.1. Finite Difference Method -- 6.2. 1D Steady Conduction -- 6.3. 2D Conduction -- 6.4. 2D Conduction with Internal Heat Conversion -- 6.5. Numerical Transient Conduction -- 6.6. Convective Boundary Condition -- 6.7. 1D Transient Conduction: Implicit Formulation -- 6.8. 2D Transient Conduction -- References -- Chapter 7: Fundamentals of Convective Heat Transfer -- 7.1. Forced Convection and Dimensionless Parameters -- 7.2. Free Convection and Dimensionless Parameters Heat Transfer: A Systematic Learning Approach presents valuable tools in understanding heat transfer mechanisms and provides a clear understanding of complex turbulent flows. It provides a comprehensive introduction to topics of heat transfer, including conduction, convection, thermal radiation, and nanofluids Wärmeübertragung (DE-588)4064211-2 gnd rswk-swf Wärmeübertragung (DE-588)4064211-2 s DE-604 Erscheint auch als Online-Ausgabe 978-1-003-42840-4 Erscheint auch als Druck-Ausgabe, hbk 978-1-032-54982-8 Erscheint auch als Druck-Ausgabe, pbk 978-1-032-54983-5 |
spellingShingle | Uddin, Naseem Heat transfer a systematic learning approach Cover -- Half Title -- Title Page -- Copyright Page -- Dedication -- Contents -- Nomenclature -- Author -- Prologue -- Chapter 1: Heat Transfer -- 1.1. Heat Transfer -- a Historical Perspective -- 1.2. Energies in Thermodynamics -- 1.3. First Law of Thermodynamics -- 1.4. Types of Heat -- 1.5. Volumetric Heat Capacity -- 1.6. Modes of Heat Transfer -- 1.6.1. Conduction -- 1.6.2. Convection -- 1.6.3. Radiation -- References -- Chapter 2: Heat Conduction Equation -- 2.1. Three-Dimensional Heat Conduction Equation -- 2.2. Some Common Boundary Conditions -- 2.2.1. Dirichlet Boundary Condition 2.2.2. Neumann Boundary Condition -- 2.2.3. Robin Boundary Condition -- 2.3. Scale Analysis for Heat Transfer Problems -- References -- Chapter 3: Steady-State One-Dimensional Heat Conduction -- 3.1. Conduction through Plane Wall -- 3.2. Analogy between Heat Transfer and Current Flow -- 3.3. Multilayer Wall -- 3.4. Overall Heat Transfer Coefficient -- 3.5. Heat Transfer through a Hollow Cylinder -- 3.6. Heat Transfer through a Hollow Sphere -- 3.7. Heat Conduction through Composite Pipe or Sphere -- 3.8. The Concept of Critical Radius -- 3.9. Variable Thermal Conductivity -- 3.9.1. Plane Wall 3.9.2. Thermal Conductivity Variation in a Cylinder -- 3.10. Thermal Contact Resistance -- 3.11. Conduction with Internal Energy Conversion into Internal Energy -- 3.12. Heat Transfer by Extended Surfaces -- 3.12.1. Infinitely Long Fin -- 3.12.2. Fin Insulated at End -- 3.13. Efficiency and Effectiveness of Fin -- 3.14. Corrected Fin Length -- References -- Chapter 4: Steady-State Two-Dimensional Heat Conduction -- 4.1. Infinite Strip Case -- 4.2. Conduction Shape Factor (CSF) -- References -- Chapter 5: Transient Heat Conduction -- 5.1. One-Dimensional Unsteady Heat Conduction (Bi<0.1) 5.2. Semi-Infinite Solid with Different Boundary Conditions -- 5.2.1. Semi-Infinite Plane Wall: Constant Wall Temperature -- 5.2.2. Semi-Infinite Solid: Heat Flux Boundary Condition -- 5.2.3. Semi-Infinite Solid: Convection Boundary Condition -- 5.2.4. Semi-Infinite Solid: Energy Pulse Boundary Condition -- 5.3. Transient Conduction inside a Large Slab with Convective Cooling -- 5.4. Transient Conduction through a Long Cylinder with Convective Cooling -- 5.5. Transient Heat Conduction through a Sphere with Convective Cooling -- References Chapter 6: Heat Conduction Analysis Using the Finite Difference Technique -- 6.1. Finite Difference Method -- 6.2. 1D Steady Conduction -- 6.3. 2D Conduction -- 6.4. 2D Conduction with Internal Heat Conversion -- 6.5. Numerical Transient Conduction -- 6.6. Convective Boundary Condition -- 6.7. 1D Transient Conduction: Implicit Formulation -- 6.8. 2D Transient Conduction -- References -- Chapter 7: Fundamentals of Convective Heat Transfer -- 7.1. Forced Convection and Dimensionless Parameters -- 7.2. Free Convection and Dimensionless Parameters Wärmeübertragung (DE-588)4064211-2 gnd |
subject_GND | (DE-588)4064211-2 |
title | Heat transfer a systematic learning approach |
title_auth | Heat transfer a systematic learning approach |
title_exact_search | Heat transfer a systematic learning approach |
title_exact_search_txtP | Heat transfer a systematic learning approach |
title_full | Heat transfer a systematic learning approach Naseem Uddin |
title_fullStr | Heat transfer a systematic learning approach Naseem Uddin |
title_full_unstemmed | Heat transfer a systematic learning approach Naseem Uddin |
title_short | Heat transfer |
title_sort | heat transfer a systematic learning approach |
title_sub | a systematic learning approach |
topic | Wärmeübertragung (DE-588)4064211-2 gnd |
topic_facet | Wärmeübertragung |
work_keys_str_mv | AT uddinnaseem heattransferasystematiclearningapproach |