Heat Pipe Design and Technology Modern Applications for Practical Thermal Management

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1. Verfasser: Zohuri, Bahman (VerfasserIn)
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Sprache:English
Veröffentlicht: Cham Springer International Publishing 2016
Ausgabe:2nd ed. 2016
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Datensatz im Suchindex

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https://doi.org/10.1007/978-3-319-29841-2
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adam_text HEAT PIPE DESIGN AND TECHNOLOGY / ZOHURI, BAHMAN : 2016 TABLE OF CONTENTS / INHALTSVERZEICHNIS INTRODUCTION BASIC PRINCIPLES OF HEAT PIPES AND HISTORY HEAT PIPE THEORY AND MODELING MATHEMATICAL MODELING AND AVAILABLE COMPUTER CODES APPLICATION OF HEAT PIPES IN INDUSTRY HEAT PIPE MANUFACTURING OTHER TYPES OF HEAT PIPES APPENDIX A: DIMENSIONAL EQUIVALENTS AND PHYSICAL CONSTANTS APPENDIX B: PROPERTIES OF SOLID MATERIALS APPENDIX C: PROPERTIES OF FLUIDS APPENDIX D: DIFFERENT HEAT PIPE DESIGN EXAMPLES INDEX DIESES SCHRIFTSTUECK WURDE MASCHINELL ERZEUGT. HEAT PIPE DESIGN AND TECHNOLOGY / ZOHURI, BAHMAN : 2016 ABSTRACT / INHALTSTEXT THIS BOOK PROVIDES A PRACTICAL STUDY OF MODERN HEAT PIPE ENGINEERING, DISCUSSING HOW IT CAN BE OPTIMIZED FOR USE ON A WIDER SCALE. AN INTRODUCTION TO OPERATIONAL AND DESIGN PRINCIPLES, THIS BOOK OFFERS A REVIEW OF HEAT AND MASS TRANSFER THEORY RELEVANT TO PERFORMANCE, LEADING INTO AND EXPLORATION OF THE USE OF HEAT PIPES, PARTICULARLY IN HIGH-HEAT FLUX APPLICATIONS AND IN SITUATIONS IN WHICH THERE IS ANY COMBINATION OF NON-UNIFORM HEAT LOADING, LIMITED AIRFLOW OVER THE HEAT GENERATING COMPONENTS, AND SPACE OR WEIGHT CONSTRAINTS. KEY IMPLEMENTATION CHALLENGES ARE TACKLED, INCLUDING LOAD-BALANCING, MATERIALS CHARACTERISTICS, OPERATING TEMPERATURE RANGES, THERMAL RESISTANCE, AND OPERATING ORIENTATION. WITH ITS PRESENTATION OF MATHEMATICAL MODELS TO CALCULATE HEAT TRANSFER LIMITATIONS AND TEMPERATURE GRADIENT OF BOTH HIGH- AND LOW-TEMPERATURE HEAT PIPES, THE BOOK COMPARES CALCULATED RESULTS WITH THE AVAILABLE EXPERIMENTAL DATA. IT ALSO INCLUDES A SERIES OF COMPUTER PROGRAMS DEVELOPED BY THE AUTHOR TO SUPPORT PRESENTED DATA, AID DESIGN, AND PREDICT PERFORMANCE. REVISED EDITION OF CLASSIC RESOURCE NOW INCLUDES ALL NEW PRACTICAL EXAMPLES, ADDED CHAPTERS ON LEADING-EDGE APPLICATIONS OF HEAT PIPES IN AEROSPACE, NUCLEAR AND SOLAR SYSTEMS FEATURES COMPLETE COVERAGE OF THIS FOUNDATIONAL TECHNOLOGY, A PROVEN ENERGY-SAVING SOLUTION FOR PASSIVE THERMAL CONTROL NEW EXAMINATION OF NUMERICAL INVESTIGATION OF HYDRODYNAMICS AND THERMAL PERFORMANCE OF SPECIALLY CONFIGURED HEAT PIPES FOR HIGH-TEMPERATURE THERMAL ENERGY STORAGE SYSTEMS DIESES SCHRIFTSTUECK WURDE MASCHINELL ERZEUGT.
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author Zohuri, Bahman
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spellingShingle Zohuri, Bahman
Heat Pipe Design and Technology Modern Applications for Practical Thermal Management
Energy
Energy systems
Thermodynamics
Heat engineering
Heat transfer
Mass transfer
Fluid mechanics
Building construction
Energy Systems
Engineering Thermodynamics, Heat and Mass Transfer
Building Physics, HVAC.
Engineering Fluid Dynamics
Wärmerohr (DE-588)4132614-3 gnd
subject_GND (DE-588)4132614-3
title Heat Pipe Design and Technology Modern Applications for Practical Thermal Management
title_auth Heat Pipe Design and Technology Modern Applications for Practical Thermal Management
title_exact_search Heat Pipe Design and Technology Modern Applications for Practical Thermal Management
title_full Heat Pipe Design and Technology Modern Applications for Practical Thermal Management by Bahman Zohuri
title_fullStr Heat Pipe Design and Technology Modern Applications for Practical Thermal Management by Bahman Zohuri
title_full_unstemmed Heat Pipe Design and Technology Modern Applications for Practical Thermal Management by Bahman Zohuri
title_short Heat Pipe Design and Technology
title_sort heat pipe design and technology modern applications for practical thermal management
title_sub Modern Applications for Practical Thermal Management
topic Energy
Energy systems
Thermodynamics
Heat engineering
Heat transfer
Mass transfer
Fluid mechanics
Building construction
Energy Systems
Engineering Thermodynamics, Heat and Mass Transfer
Building Physics, HVAC.
Engineering Fluid Dynamics
Wärmerohr (DE-588)4132614-3 gnd
topic_facet Energy
Energy systems
Thermodynamics
Heat engineering
Heat transfer
Mass transfer
Fluid mechanics
Building construction
Energy Systems
Engineering Thermodynamics, Heat and Mass Transfer
Building Physics, HVAC.
Engineering Fluid Dynamics
Wärmerohr
url https://doi.org/10.1007/978-3-319-29841-2
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