Solar energy fundamentals and modeling techniques: atmosphere, environment, climate change and renewable energy
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
London
Springer
2008
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Schlagworte: | |
Online-Zugang: | Auszug Auszug Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XII,276 S. Ill., graph. Darst., Kt. |
ISBN: | 1848001339 9781848001336 |
Internformat
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264 | 1 | |a London |b Springer |c 2008 | |
300 | |a XII,276 S. |b Ill., graph. Darst., Kt. | ||
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adam_text | IMAGE 1
ZEKAI §EN
SOLAR ENERGY FUNDAMENTALS
AND MODELING TECHNIQUES
ATMOSPHERE, ENVIRONMENT, CLIMATE CHANGE AND RENEWABLE ENERGY
4UE SPRI RINGER
IMAGE 2
CONTENTS
1 ENERGY AND CLIMATE CHANGE 1
1.1 GENERAL 1
1.2 ENERGY AND CLIMATE 3
1.3 ENERGY AND SOCIETY 5
1.4 ENERGY AND INDUSTRY 10
1.5 ENERGY AND THE ECONOMY 12
1.6 ENERGY AND THE ATMOSPHERIC ENVIRONMENT 13
1.7 ENERGY AND THE FUTURE 17
REFERENCES 18
2 ATMOSPHERIC ENVIRONMENT AND RENEWABLE ENERGY 21
2.1 GENERAL 21
2.2 WEATHER, CLIMATE, AND CLIMATE CHANGE 22
2.3 ATMOSPHERE AND ITS NATURAL COMPOSITION 26
2.4 ANTHROPOGENIC COMPOSITION OF THE ATMOSPHERE 28
2.4.1 CARBON DIOXIDE (C0 2 ) 29
2.4.2 METHANE (CH 4 ) 30
2.4.3 NITROUS OXIDE (N 2 0) 31
2.4.4 CHLOROFIUOROCARBONS (CFCS) 31
2.4.5 WATER VAPOR (H 2 0) 31
2.4.6 AEROSOLS 33
2.5 ENERGY DYNAMICS IN THE ATMOSPHERE 34
2.6 RENEWABLE ENERGY ALTERNATIVES AND CLIMATE CHANGE 35
2.6.1 SOLAR ENERGY 36
2.6.2 WIND ENERGY 37
2.6.3 HYDROPOWER ENERGY 38
2.6.4 BIOMASS ENERGY 39
2.6.5 WAVE ENERGY 40
2.6.6 HYDROGEN ENERGY 41
2.7 ENERGY UNITS 43
REFERENCES 44
IX
IMAGE 3
X CONTENTS
3 SOLAR RADIATION DETERMINISTIC MODELS 47
3.1 GENERAL 47
3.2 THE SUN 47
3.3 ELECTROMAGNETIC (EM) SPECTRUM 51
3.4 ENERGY BALANCE OF THE EARTH 55
3.5 EARTH MOTION 57
3.6 SOLAR RADIATION 61
3.6.1 IRRADIATION PATH 64
3.7 SOLAR CONSTANT 66
3.8 SOLAR RADIATION CALCULATION 67
3.8.1 ESTIMATION OF CLEAR-SKY RADIATION 70
3.9 SOLAR PARAMETERS 72
3.9.1 EARTH S ECCENTRICITY 72
3.9.2 SOLAR TIME 72
3.9.3 USEFUL ANGLES 74
3.10 SOLAR GEOMETRY 77
3.10.1 CARTESIAN AND SPHERICAL COORDINATE SYSTEM 78
3.11 ZENITH ANGLE CALCULATION 85
3.12 SOLAR ENERGY CALCULATIONS 87
3.12.1 DAILY SOLAR ENERGY ON A HORIZONTAL SURFACE 88
3.12.2 SOLAR ENERGY ON AN INCLINED SURFACE 91
3.12.3 SUNRISE AND SUNSET HOUR ANGLES 93
REFERENCES 98
4 LINEAR SOLAR ENERGY MODELS 101
4.1 GENERAL 101
4.2 SOLAR RADIATION AND DAYLIGHT MEASUREMENT 102
4.2.1 INSTRUMENT ERROR AND UNCERTAINTY 103
4.2.2 OPERATIONAL ERRORS 104
4.2.3 DIFFUSE-IRRADIANCE DATA MEASUREMENT ERRORS 105
4.3 STATISTICAL EVALUATION OF MODELS 106
4.3.1 COEFNCIENT OF DETERMINATION (R 2 ) 109
4.3.2 COEFNCIENT OF CORRELATION (R) 110
4.3.3 MEAN BIAS ERROR, MEAN OF ABSOLUTE DEVIATIONS, AND ROOT MEAN SQUARE
ERROR 111
4.3.4 OUTLIER ANALYSIS 112
4.4 LINEAR MODEL 113
4.4.1 ANGSTROEM MODEL (AM) 116
4.5 SUCCESSIVE SUBSTITUTION (SS) MODEL 120
4.6 UNRESTRICTED MODEL (UM) 126
4.7 PRINCIPAL COMPONENT ANALYSIS (PCA) MODEL 133
4.8 LINEAR CLUSTER METHOD (LCM) 140
REFERENCES 147
IMAGE 4
CONTENTS XI
5 NON-LINEAR SOLAR ENERGY MODELS 151
5.1 GENERAL 151
5.2 CLASSIC NON-LINEAR MODELS 151
5.3 SIMPLE POWER MODEL (SPM) 156
5.3.1 ESTIMATION OF MODEL PARAMETERS 157
5.4 COMPARISON OF DIFFERENT MODELS 159
5.5 SOLAR IRRADIANCE POLYGON MODEL (SIPM) 160
5.6 TRIPLE SOLAR IRRADIATION MODEL (TSIM) 168
5.7 TRIPLE DROUGHT-SOLAR IRRADIATION MODEL (TDSIM) 172
5.8 FUZZY LOGIC MODEL (FLM) 176
5.8.1 FUZZY SETS AND LOGIC 177
5.8.2 FUZZY ALGORITHM APPLICATION FOR SOLAR RADIATION 179
5.9 GENO-FUZZY MODEL (GFM) 186
5.10 MONTHLY PRINCIPAL COMPONENT MODEL (MPCM) 188
5.11 PARABOLIC MONTHLY IRRADIATION MODEL (PMIM) 196
5.12 SOLAR RADIATION ESTIMATION FROM AMBIENT AIR TEMPERATURE 202
REFERENCES 206
6 SPATIAL SOLAR ENERGY MODELS 209
6.1 GENERAL 209
6.2 SPATIAL VARIABILITY 210
6.3 LINEAR INTERPOLATION 212
6.4 GEOMETRIE WEIGHTING FUNCTION 214
6.5 CUMULATIVE SEMIVARIOGRAM (CSV) AND WEIGHTING FUNCTION 216 6.5.1
STANDARD SPATIAL DEPENDENCE FUNCTION (SDF) 217
6.6 REGIONAL ESTIMATION 220
6.6.1 CROSS-VALIDATION 221
6.6.2 SPATIAL INTERPOLATION 226
6.7 GENERAL APPLICATION 228
REFERENCES 236
7 SOLAR RADIATION DEVICES AND COLLECTORS 239
7.1 GENERAL 239
7.2 SOLAR ENERGY ALTERNATIVES 239
7.3 HEAT TRANSFER AND LOSSES 241
7.3.1 CONDUCTION 242
7.3.2 CONVECTION 243
7.3.3 RADIATION 244
7.4 COLLECTORS 245
7.4.1 FIAT PLATE COLLECTORS 246
7.4.2 TRACKING COLLECTORS 249
7.4.3 FOCUSING (CONCENTRATING) COLLECTORS 250
7.4.4 TILTED COLLECTORS 252
7.4.5 SOLAR POND COLLECTORS 253
7.4.6 PHOTO-OPTICAL COLLECTORS 253
IMAGE 5
XLL
CONTENTS
7.5 PHOTOVOLTAIC (PV) CELLS 256
7.6 FUEL CELLS 259
7.7 HYDROGEN STORAGE AND TRANSPORT 259
7.8 SOLAR ENERGY HOME 260
7.9 SOLAR ENERGY AND DESALINATION PLANTS 261
7.10 FUTURE EXPECTATIONS 262
REFERENCES 264
A A SIMPLE EXPLANATION OF BETA DISTRIBUTION 267
B A SIMPLE POWER MODEL 269
INDEX 273
|
adam_txt |
IMAGE 1
ZEKAI §EN
SOLAR ENERGY FUNDAMENTALS
AND MODELING TECHNIQUES
ATMOSPHERE, ENVIRONMENT, CLIMATE CHANGE AND RENEWABLE ENERGY
4UE SPRI RINGER
IMAGE 2
CONTENTS
1 ENERGY AND CLIMATE CHANGE 1
1.1 GENERAL 1
1.2 ENERGY AND CLIMATE 3
1.3 ENERGY AND SOCIETY 5
1.4 ENERGY AND INDUSTRY 10
1.5 ENERGY AND THE ECONOMY 12
1.6 ENERGY AND THE ATMOSPHERIC ENVIRONMENT 13
1.7 ENERGY AND THE FUTURE 17
REFERENCES 18
2 ATMOSPHERIC ENVIRONMENT AND RENEWABLE ENERGY 21
2.1 GENERAL 21
2.2 WEATHER, CLIMATE, AND CLIMATE CHANGE 22
2.3 ATMOSPHERE AND ITS NATURAL COMPOSITION 26
2.4 ANTHROPOGENIC COMPOSITION OF THE ATMOSPHERE 28
2.4.1 CARBON DIOXIDE (C0 2 ) 29
2.4.2 METHANE (CH 4 ) 30
2.4.3 NITROUS OXIDE (N 2 0) 31
2.4.4 CHLOROFIUOROCARBONS (CFCS) 31
2.4.5 WATER VAPOR (H 2 0) 31
2.4.6 AEROSOLS 33
2.5 ENERGY DYNAMICS IN THE ATMOSPHERE 34
2.6 RENEWABLE ENERGY ALTERNATIVES AND CLIMATE CHANGE 35
2.6.1 SOLAR ENERGY 36
2.6.2 WIND ENERGY 37
2.6.3 HYDROPOWER ENERGY 38
2.6.4 BIOMASS ENERGY 39
2.6.5 WAVE ENERGY 40
2.6.6 HYDROGEN ENERGY 41
2.7 ENERGY UNITS 43
REFERENCES 44
IX
IMAGE 3
X CONTENTS
3 SOLAR RADIATION DETERMINISTIC MODELS 47
3.1 GENERAL 47
3.2 THE SUN 47
3.3 ELECTROMAGNETIC (EM) SPECTRUM 51
3.4 ENERGY BALANCE OF THE EARTH 55
3.5 EARTH MOTION 57
3.6 SOLAR RADIATION 61
3.6.1 IRRADIATION PATH 64
3.7 SOLAR CONSTANT 66
3.8 SOLAR RADIATION CALCULATION 67
3.8.1 ESTIMATION OF CLEAR-SKY RADIATION 70
3.9 SOLAR PARAMETERS 72
3.9.1 EARTH'S ECCENTRICITY 72
3.9.2 SOLAR TIME 72
3.9.3 USEFUL ANGLES 74
3.10 SOLAR GEOMETRY 77
3.10.1 CARTESIAN AND SPHERICAL COORDINATE SYSTEM 78
3.11 ZENITH ANGLE CALCULATION 85
3.12 SOLAR ENERGY CALCULATIONS 87
3.12.1 DAILY SOLAR ENERGY ON A HORIZONTAL SURFACE 88
3.12.2 SOLAR ENERGY ON AN INCLINED SURFACE 91
3.12.3 SUNRISE AND SUNSET HOUR ANGLES 93
REFERENCES 98
4 LINEAR SOLAR ENERGY MODELS 101
4.1 GENERAL 101
4.2 SOLAR RADIATION AND DAYLIGHT MEASUREMENT 102
4.2.1 INSTRUMENT ERROR AND UNCERTAINTY 103
4.2.2 OPERATIONAL ERRORS 104
4.2.3 DIFFUSE-IRRADIANCE DATA MEASUREMENT ERRORS 105
4.3 STATISTICAL EVALUATION OF MODELS 106
4.3.1 COEFNCIENT OF DETERMINATION (R 2 ) 109
4.3.2 COEFNCIENT OF CORRELATION (R) 110
4.3.3 MEAN BIAS ERROR, MEAN OF ABSOLUTE DEVIATIONS, AND ROOT MEAN SQUARE
ERROR 111
4.3.4 OUTLIER ANALYSIS 112
4.4 LINEAR MODEL 113
4.4.1 ANGSTROEM MODEL (AM) 116
4.5 SUCCESSIVE SUBSTITUTION (SS) MODEL 120
4.6 UNRESTRICTED MODEL (UM) 126
4.7 PRINCIPAL COMPONENT ANALYSIS (PCA) MODEL 133
4.8 LINEAR CLUSTER METHOD (LCM) 140
REFERENCES 147
IMAGE 4
CONTENTS XI
5 NON-LINEAR SOLAR ENERGY MODELS 151
5.1 GENERAL 151
5.2 CLASSIC NON-LINEAR MODELS 151
5.3 SIMPLE POWER MODEL (SPM) 156
5.3.1 ESTIMATION OF MODEL PARAMETERS 157
5.4 COMPARISON OF DIFFERENT MODELS 159
5.5 SOLAR IRRADIANCE POLYGON MODEL (SIPM) 160
5.6 TRIPLE SOLAR IRRADIATION MODEL (TSIM) 168
5.7 TRIPLE DROUGHT-SOLAR IRRADIATION MODEL (TDSIM) 172
5.8 FUZZY LOGIC MODEL (FLM) 176
5.8.1 FUZZY SETS AND LOGIC 177
5.8.2 FUZZY ALGORITHM APPLICATION FOR SOLAR RADIATION 179
5.9 GENO-FUZZY MODEL (GFM) 186
5.10 MONTHLY PRINCIPAL COMPONENT MODEL (MPCM) 188
5.11 PARABOLIC MONTHLY IRRADIATION MODEL (PMIM) 196
5.12 SOLAR RADIATION ESTIMATION FROM AMBIENT AIR TEMPERATURE 202
REFERENCES 206
6 SPATIAL SOLAR ENERGY MODELS 209
6.1 GENERAL 209
6.2 SPATIAL VARIABILITY 210
6.3 LINEAR INTERPOLATION 212
6.4 GEOMETRIE WEIGHTING FUNCTION 214
6.5 CUMULATIVE SEMIVARIOGRAM (CSV) AND WEIGHTING FUNCTION 216 6.5.1
STANDARD SPATIAL DEPENDENCE FUNCTION (SDF) 217
6.6 REGIONAL ESTIMATION 220
6.6.1 CROSS-VALIDATION 221
6.6.2 SPATIAL INTERPOLATION 226
6.7 GENERAL APPLICATION 228
REFERENCES 236
7 SOLAR RADIATION DEVICES AND COLLECTORS 239
7.1 GENERAL 239
7.2 SOLAR ENERGY ALTERNATIVES 239
7.3 HEAT TRANSFER AND LOSSES 241
7.3.1 CONDUCTION 242
7.3.2 CONVECTION 243
7.3.3 RADIATION 244
7.4 COLLECTORS 245
7.4.1 FIAT PLATE COLLECTORS 246
7.4.2 TRACKING COLLECTORS 249
7.4.3 FOCUSING (CONCENTRATING) COLLECTORS 250
7.4.4 TILTED COLLECTORS 252
7.4.5 SOLAR POND COLLECTORS 253
7.4.6 PHOTO-OPTICAL COLLECTORS 253
IMAGE 5
XLL
CONTENTS
7.5 PHOTOVOLTAIC (PV) CELLS 256
7.6 FUEL CELLS 259
7.7 HYDROGEN STORAGE AND TRANSPORT 259
7.8 SOLAR ENERGY HOME 260
7.9 SOLAR ENERGY AND DESALINATION PLANTS 261
7.10 FUTURE EXPECTATIONS 262
REFERENCES 264
A A SIMPLE EXPLANATION OF BETA DISTRIBUTION 267
B A SIMPLE POWER MODEL 269
INDEX 273 |
any_adam_object | 1 |
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author | Şen, Zekâi 1947- |
author_GND | (DE-588)140990100 |
author_facet | Şen, Zekâi 1947- |
author_role | aut |
author_sort | Şen, Zekâi 1947- |
author_variant | z ş zş |
building | Verbundindex |
bvnumber | BV023069089 |
callnumber-first | T - Technology |
callnumber-label | TJ810 |
callnumber-raw | TJ810 |
callnumber-search | TJ810 |
callnumber-sort | TJ 3810 |
callnumber-subject | TJ - Mechanical Engineering and Machinery |
classification_rvk | ZP 3720 |
classification_tum | ERG 080f ERG 720f |
ctrlnum | (OCoLC)181423006 (DE-599)DNB986162663 |
dewey-full | 621.47 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.47 |
dewey-search | 621.47 |
dewey-sort | 3621.47 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Energietechnik, Energiewirtschaft Maschinenbau / Maschinenwesen Energietechnik |
discipline_str_mv | Energietechnik, Energiewirtschaft Maschinenbau / Maschinenwesen Energietechnik |
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id | DE-604.BV023069089 |
illustrated | Illustrated |
index_date | 2024-07-02T19:32:17Z |
indexdate | 2024-07-09T21:10:17Z |
institution | BVB |
isbn | 1848001339 9781848001336 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016272255 |
oclc_num | 181423006 |
open_access_boolean | |
owner | DE-703 DE-91 DE-BY-TUM DE-1102 DE-634 DE-898 DE-BY-UBR DE-83 |
owner_facet | DE-703 DE-91 DE-BY-TUM DE-1102 DE-634 DE-898 DE-BY-UBR DE-83 |
physical | XII,276 S. Ill., graph. Darst., Kt. |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Springer |
record_format | marc |
spelling | Şen, Zekâi 1947- Verfasser (DE-588)140990100 aut Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy Zekai Şen London Springer 2008 XII,276 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Solar energy Einstrahlung (DE-588)4631786-7 gnd rswk-swf Sonnenenergie (DE-588)4055572-0 gnd rswk-swf Mathematisches Modell (DE-588)4114528-8 gnd rswk-swf Sonnenenergie (DE-588)4055572-0 s DE-604 Einstrahlung (DE-588)4631786-7 s Mathematisches Modell (DE-588)4114528-8 s Erscheint auch als Online-Ausgabe 978-1-84800-134-3 http://swbplus.bsz-bw.de/bsz280569122vor.htm Auszug http://swbplus.bsz-bw.de/bsz280569122kap.htm Auszug GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016272255&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Şen, Zekâi 1947- Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy Solar energy Einstrahlung (DE-588)4631786-7 gnd Sonnenenergie (DE-588)4055572-0 gnd Mathematisches Modell (DE-588)4114528-8 gnd |
subject_GND | (DE-588)4631786-7 (DE-588)4055572-0 (DE-588)4114528-8 |
title | Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy |
title_auth | Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy |
title_exact_search | Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy |
title_exact_search_txtP | Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy |
title_full | Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy Zekai Şen |
title_fullStr | Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy Zekai Şen |
title_full_unstemmed | Solar energy fundamentals and modeling techniques atmosphere, environment, climate change and renewable energy Zekai Şen |
title_short | Solar energy fundamentals and modeling techniques |
title_sort | solar energy fundamentals and modeling techniques atmosphere environment climate change and renewable energy |
title_sub | atmosphere, environment, climate change and renewable energy |
topic | Solar energy Einstrahlung (DE-588)4631786-7 gnd Sonnenenergie (DE-588)4055572-0 gnd Mathematisches Modell (DE-588)4114528-8 gnd |
topic_facet | Solar energy Einstrahlung Sonnenenergie Mathematisches Modell |
url | http://swbplus.bsz-bw.de/bsz280569122vor.htm http://swbplus.bsz-bw.de/bsz280569122kap.htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016272255&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT senzekai solarenergyfundamentalsandmodelingtechniquesatmosphereenvironmentclimatechangeandrenewableenergy |