Thermodynamics of solar energy conversion:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
WILEY-VCH
[2008]
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | XIII, 192 Seiten Illustrationen, Diagramme |
ISBN: | 9783527408412 352740841X |
Internformat
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245 | 1 | 0 | |a Thermodynamics of solar energy conversion |c Alexis de Vos |
264 | 1 | |a Weinheim |b WILEY-VCH |c [2008] | |
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650 | 4 | |a Énergie - Conversion | |
650 | 4 | |a Énergie - Conversion directe | |
650 | 4 | |a Énergie solaire | |
650 | 4 | |a Direct energy conversion | |
650 | 4 | |a Solar energy | |
650 | 4 | |a Thermodynamics | |
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adam_text |
ALEXIS DE VOS THERMODYNAMICS OF SOLAR ENERGY CONVERSION WILEY- VCH
WILEY-VCH VERLAG GMBH & CO. KGAA VII CONTENTS 1 RADIATION 1 1.1
INTRODUCTION 1 1.2 PHOTON MODES 9 1 1.3 PHOTON STATISTICS 9 4 1.4
PLANCK'S LAW 7 1.5 THE STEFAN-BOLTZMANN LAW 10 1.6 KIRCHHOFF'S LAW 11
1.7 WHY T 4 ? ^ 12 1.8 EXERCISES 24 REFERENCES 15 2 THE SOLAR SYSTEM 77
2.1 THE SUN 17 2.2 THE PLANETS 20 2.3 STARLIGHT 9 22 2.4 MOONLIGHT ^ 23
2.5 RADIATION FROM "EMPTY" SPACE ^ 24 2.6 INTERNAL HEAT SOURCES ^ 25 2.7
CONCLUSION 26 2.8 EXERCISES 27 REFERENCES 27 3 THERMODYNAMICAL ENGINES
29 3.1 INTRODUCTION 29 3.2 THE CARNOT ENGINE 29 3.3 THE CURZON-AHLBORN
ENGINE 32 3.4 ENDOREVERSIBLE ENGINES 38 3.5 AN EXAMPLE 38 3.6 THE
STEFAN-BOLTZMANN ENGINE 41 THERMODYNAMICS OF SOLAR ENERGY CONVERSION.
ALEXIS DE VOS COPYRIGHT 2008 WILEY-VCH VERLAG GMBH & CO. KGAA,
WEINHEIM ISBN: 978-3-527-40841-2 VIIII CONTENTS 3.7 CONCLUSION 46 3.8 AN
EXAMPLE 47 3.9 EXERCISES 50 REFERENCES 50 4 WIND ENERGY CREATION 53 4.1
INTRODUCTION 53 4.2 PRELIMINARY MODEL 53 A3 FINAL MODEL 57 4.4 WHY 8%? ^
60 4.5 TIDAL WINDS AND ZONAL WINDS 61 4.6 TWO EXAMPLES 65 4.7 EXERCISES
67 REFERENCES 67 5 PHOTOTHERMAL CONVERSION 69 5.1 INTRODUCTION 69 5.2
SOLAR ENERGY EFFICIENCY 72 5.3 THE MUESER ENGINE 75 5.4 WHY 13%? 9 76 5.5
CONCENTRATORS 78 5.6 THE MUESER ENGINE WITH CONCENTRATOR 80 5.7 SELECTIVE
BLACK BODIES 82 5.8 THE MUESER ENGINE WITH BANDGAP 84 5.9 CONCLUSION 86
5.10 AN EXAMPLE 86 5.11 EXERCISES 89 REFERENCES 89 6 PHOTOVOLTAIC
CONVERSION 91 6.1 INTRODUCTION 91 6.2 SEMICONDUCTORS 91 6.3 THE SOLAR
CELL 95 6.4 AN EXAMPLE 201 6.5 EXERCISES 103 REFERENCES 104 7 HYBRID
CONVERSION 105 7.1 INTRODUCTION 105 7.2 IS A SOLAR CELL REALLY AN
ENDOREVERSIBLE ENGINE? ^ 105 7.3 A UNIFIED MODEL 108 7A ALTERNATIVE
MODEL ^ 113 7.5 ONSAGER'S PRINCIPLE V 125 7.6 EXAMPLES 117 7.7 EXERCISES
118 REFERENCES 119 8 MULTICOLOR CONVERSION 121 8.1 INTRODUCTION 121 8.2
PHOTOTHERMAL MULTICOLOR CONVERTERS 121 8.3 PHOTOVOLTAIC MULTICOLOR
CONVERTERS 225 8.4 OMNICOLOR CONVERTERS 227 8.5 TWO-TERMINAL OMNICOLOR
CONVERTERS 230 8.6 THE BOESE ENGINE ^ 133 8.7 CONCLUSION 234 8.8 TWO
EXAMPLES 235 8.9 EXERCISES 237 REFERENCES 237 9 CHEMICAL REACTIONS 139
9.1 INTRODUCTION 239 9.2 REVERSIBLE AND IRREVERSIBLE CHEMICAL ENGINES
9.3 THE GENERALIZED ENDOREVERSIBLE ENGINE 243 9.4 TWO ALTERNATIVE
GENERALIZED MODELS ^ 244 9.5 THE ENDOREVERSIBLE CHEMICAL REACTOR 247 9.6
CONCLUSION 252 9.7 EXERCISES 252 REFERENCES 253 10 PHOTOSYNTHESIS 155
10.1 INTRODUCTION 255 10.2 THE PHOTOSYNTHESIS ENGINE 256 10.3 AN EXAMPLE
257 10.4 EXERCISES 262 REFERENCES 162 POST SCRIPTUM 163 REFERENCES 265 X
CONTENTS APPENDICES A CONSTANTS 167 A.L MATHEMATICAL CONSTANTS 167 A.2
PHYSICAL CONSTANTS 268 B ABOUT THE N-DIMENSIONAL SPHERE 9 169 C KEPLER'S
SECOND LAW 9 173 D ABOUT A FOURTH-DEGREE EQUATION 177 E THE GENERAL
CHEMICAL REACTION 179 F LIST OF SYMBOLS 183 INDEX 191 |
adam_txt |
ALEXIS DE VOS THERMODYNAMICS OF SOLAR ENERGY CONVERSION WILEY- VCH
WILEY-VCH VERLAG GMBH & CO. KGAA VII CONTENTS 1 RADIATION 1 1.1
INTRODUCTION 1 1.2 PHOTON MODES 9 1 1.3 PHOTON STATISTICS 9 4 1.4
PLANCK'S LAW 7 1.5 THE STEFAN-BOLTZMANN LAW 10 1.6 KIRCHHOFF'S LAW 11
1.7 WHY T 4 ? ^ 12 1.8 EXERCISES 24 REFERENCES 15 2 THE SOLAR SYSTEM 77
2.1 THE SUN 17 2.2 THE PLANETS 20 2.3 STARLIGHT 9 22 2.4 MOONLIGHT ^ 23
2.5 RADIATION FROM "EMPTY" SPACE ^ 24 2.6 INTERNAL HEAT SOURCES ^ 25 2.7
CONCLUSION 26 2.8 EXERCISES 27 REFERENCES 27 3 THERMODYNAMICAL ENGINES
29 3.1 INTRODUCTION 29 3.2 THE CARNOT ENGINE 29 3.3 THE CURZON-AHLBORN
ENGINE 32 3.4 ENDOREVERSIBLE ENGINES 38 3.5 AN EXAMPLE 38 3.6 THE
STEFAN-BOLTZMANN ENGINE 41 THERMODYNAMICS OF SOLAR ENERGY CONVERSION.
ALEXIS DE VOS COPYRIGHT 2008 WILEY-VCH VERLAG GMBH & CO. KGAA,
WEINHEIM ISBN: 978-3-527-40841-2 VIIII CONTENTS 3.7 CONCLUSION 46 3.8 AN
EXAMPLE 47 3.9 EXERCISES 50 REFERENCES 50 4 WIND ENERGY CREATION 53 4.1
INTRODUCTION 53 4.2 PRELIMINARY MODEL 53 A3 FINAL MODEL 57 4.4 WHY 8%? ^
60 4.5 TIDAL WINDS AND ZONAL WINDS 61 4.6 TWO EXAMPLES 65 4.7 EXERCISES
67 REFERENCES 67 5 PHOTOTHERMAL CONVERSION 69 5.1 INTRODUCTION 69 5.2
SOLAR ENERGY EFFICIENCY 72 5.3 THE MUESER ENGINE 75 5.4 WHY 13%? 9 76 5.5
CONCENTRATORS 78 5.6 THE MUESER ENGINE WITH CONCENTRATOR 80 5.7 SELECTIVE
BLACK BODIES 82 5.8 THE MUESER ENGINE WITH BANDGAP 84 5.9 CONCLUSION 86
5.10 AN EXAMPLE 86 5.11 EXERCISES 89 REFERENCES 89 6 PHOTOVOLTAIC
CONVERSION 91 6.1 INTRODUCTION 91 6.2 SEMICONDUCTORS 91 6.3 THE SOLAR
CELL 95 6.4 AN EXAMPLE 201 6.5 EXERCISES 103 REFERENCES 104 7 HYBRID
CONVERSION 105 7.1 INTRODUCTION 105 7.2 IS A SOLAR CELL REALLY AN
ENDOREVERSIBLE ENGINE? ^ 105 7.3 A UNIFIED MODEL 108 7A ALTERNATIVE
MODEL ^ 113 7.5 ONSAGER'S PRINCIPLE V 125 7.6 EXAMPLES 117 7.7 EXERCISES
118 REFERENCES 119 8 MULTICOLOR CONVERSION 121 8.1 INTRODUCTION 121 8.2
PHOTOTHERMAL MULTICOLOR CONVERTERS 121 8.3 PHOTOVOLTAIC MULTICOLOR
CONVERTERS 225 8.4 OMNICOLOR CONVERTERS 227 8.5 TWO-TERMINAL OMNICOLOR
CONVERTERS 230 8.6 THE BOESE ENGINE ^ 133 8.7 CONCLUSION 234 8.8 TWO
EXAMPLES 235 8.9 EXERCISES 237 REFERENCES 237 9 CHEMICAL REACTIONS 139
9.1 INTRODUCTION 239 9.2 REVERSIBLE AND IRREVERSIBLE CHEMICAL ENGINES
9.3 THE GENERALIZED ENDOREVERSIBLE ENGINE 243 9.4 TWO ALTERNATIVE
GENERALIZED MODELS ^ 244 9.5 THE ENDOREVERSIBLE CHEMICAL REACTOR 247 9.6
CONCLUSION 252 9.7 EXERCISES 252 REFERENCES 253 10 PHOTOSYNTHESIS 155
10.1 INTRODUCTION 255 10.2 THE PHOTOSYNTHESIS ENGINE 256 10.3 AN EXAMPLE
257 10.4 EXERCISES 262 REFERENCES 162 POST SCRIPTUM 163 REFERENCES 265 X
CONTENTS APPENDICES A CONSTANTS 167 A.L MATHEMATICAL CONSTANTS 167 A.2
PHYSICAL CONSTANTS 268 B ABOUT THE N-DIMENSIONAL SPHERE 9 169 C KEPLER'S
SECOND LAW 9 173 D ABOUT A FOURTH-DEGREE EQUATION 177 E THE GENERAL
CHEMICAL REACTION 179 F LIST OF SYMBOLS 183 INDEX 191 |
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discipline | Physik Energietechnik |
discipline_str_mv | Physik Energietechnik |
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spelling | De Vos, Alexis Verfasser (DE-588)135830370 aut Thermodynamics of solar energy conversion Alexis de Vos Weinheim WILEY-VCH [2008] XIII, 192 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier Thermodynamique Énergie - Conversion Énergie - Conversion directe Énergie solaire Direct energy conversion Solar energy Thermodynamics Sonnenenergie (DE-588)4055572-0 gnd rswk-swf Energieumwandlung (DE-588)4014730-7 gnd rswk-swf Nichtgleichgewichtsthermodynamik (DE-588)4130850-5 gnd rswk-swf Sonnenenergie (DE-588)4055572-0 s Energieumwandlung (DE-588)4014730-7 s Nichtgleichgewichtsthermodynamik (DE-588)4130850-5 s DE-604 text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3018803&prov=M&dok_var=1&dok_ext=htm Inhaltstext http://www.gbv.de/dms/ilmenau/toc/548682208.PDF Inhaltsverzeichnis GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016381302&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | De Vos, Alexis Thermodynamics of solar energy conversion Thermodynamique Énergie - Conversion Énergie - Conversion directe Énergie solaire Direct energy conversion Solar energy Thermodynamics Sonnenenergie (DE-588)4055572-0 gnd Energieumwandlung (DE-588)4014730-7 gnd Nichtgleichgewichtsthermodynamik (DE-588)4130850-5 gnd |
subject_GND | (DE-588)4055572-0 (DE-588)4014730-7 (DE-588)4130850-5 |
title | Thermodynamics of solar energy conversion |
title_auth | Thermodynamics of solar energy conversion |
title_exact_search | Thermodynamics of solar energy conversion |
title_exact_search_txtP | Thermodynamics of solar energy conversion |
title_full | Thermodynamics of solar energy conversion Alexis de Vos |
title_fullStr | Thermodynamics of solar energy conversion Alexis de Vos |
title_full_unstemmed | Thermodynamics of solar energy conversion Alexis de Vos |
title_short | Thermodynamics of solar energy conversion |
title_sort | thermodynamics of solar energy conversion |
topic | Thermodynamique Énergie - Conversion Énergie - Conversion directe Énergie solaire Direct energy conversion Solar energy Thermodynamics Sonnenenergie (DE-588)4055572-0 gnd Energieumwandlung (DE-588)4014730-7 gnd Nichtgleichgewichtsthermodynamik (DE-588)4130850-5 gnd |
topic_facet | Thermodynamique Énergie - Conversion Énergie - Conversion directe Énergie solaire Direct energy conversion Solar energy Thermodynamics Sonnenenergie Energieumwandlung Nichtgleichgewichtsthermodynamik |
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work_keys_str_mv | AT devosalexis thermodynamicsofsolarenergyconversion |