Large-scale solar thermal power technologies, costs and development
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Datensatz im Suchindex
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adam_text |
VII CONTENTS PREFACE XV PRELIMINARY REMARKS AND SUMMARY XVII THE
SIGNIFICANCE OF THE RAPID DEPLOYMENT OF SOLAR THERMAL POWER PLANTS FOR
ENERGY POLICY XVII ACKNOWLEDGMENTS XXV LIST OF TABLES XXVII 1
INTRODUCTION 7 1.1 HISTORICAL BACKGROUND 1 1.2 FORMULATING THE PROBLEM 4
2 THE SALIENT FACTS 7 2.1 SOLAR TOWER POWER PLANTS AS THE BASIS FOR COST
ESTIMATES: COST ANALYSES 7 2.2 THE COMBINED SYSTEM OF SOLAR AND BACKUP
POWER PLANTS ("SOLAR POWER SYSTEM") 9 2.2.1 SOLAR BASE-LOAD PLANTS 10
2.3 HOW MUCH DOES SOLAR POWER COST? 11 2.3.1 INTRODUCTORY REMARKS 11
2.3.2 INVESTMENTS AND POWER COSTS 12 2.3.3 ARE THE ADDITIONAL COSTS
COMPARED TO NUCLEAR PLANTS AFFORDABLE? 18 2.3.3.1 BURDEN ON THE ECONOMY
DUE TO HIGHER POWER COSTS (THE COST DIFFERENCE SOLAR ENERGY-NUCLEAR
ENERGY) 19 2.3.4 POSSIBLY LOWER COST DIFFERENCES, POTENTIAL FOR FURTHER
DEVELOPMENT 21 2.3.5 "HIDDEN" COSTS OF CONVENTIONAL POWER PLANTS 24
2.3.5.1 NUCLEAR POWER PLANTS 25 BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/997573325 DIGITALISIERT DURCH VILI CONTENTS 2.4
POSSIBLE TIME SCALES FOR THE OPERATIONAL READINESS OF SOLAR THERMAL
POWER PLANTS AND THE COMPREHENSIVE REPLACEMENT OF CURRENT POWER PLANTS
29 2.4.1 SPECIAL ASPECTS OF SOLAR POWER-PLANT DEVELOPMENT 29 2.4.2 THE
SIMPLEST TECHNOLOGY-CONSEQUENCES FOR DEVELOPMENT AND CONSTRUCTION ON A
LARGE SCALE 32 2.4.3 THE BASIC DEVELOPMENT TASKS FOR HELIOSTATS 43
2.4.3.1 STABILITY 43 2.4.3.2 COST PREDICTIONS 44 2.4.4 THE MOST
IMPORTANT SINGLE POINT: A COST STUDY FOR THE STANDARD HELIOSTAT 47 2.4.5
THE INTERDISCIPLINARY CHARACTER OF SOLAR-PLANT DEVELOPMENT 48 2.4.6
CONSEQUENCES FOR THE ORGANIZATION OF RESEARCH 49 2.4.7 INDUSTRIAL
INITIATIVES AND START-UP FUNDING 49 3 SOLAR TECHNOLOGIES-AN OVERVIEW 57
3.1 DISH PLANTS 52 3.2 TOWER POWER PLANTS 55 3.3 PARABOLIC TROUGHS 61
3.4 LINEAR FRESNEL PLANTS 64 3.5 UPDRAFT (CHIMNEY) AND DOWNDRAFT POWER
PLANTS 67 4 SOME ADDITIONAL ECONOMIC FACTORS 77 4.1 DETAILED TREATMENT
OF THE COSTS OF THE SOLAR POWER SYSTEM-COMPARISO CONTENTS IX 4.2.2.3
CONCLUSIONS REGARDING THE NRC REPORT 110 4.3 SOME SPECIAL POINTS
CONCERNING COST ESTIMATES 110 4.3.1 THE EFFECT OF MASS PRODUCTION ON THE
INDIRECT COSTS 111 4.3.2 SOLAR MULTIPLE/"24-H DESIGN INSOLATION" 112
4.3.2.1 RECALCULATION FOR A "BASE-LOAD" POWER PLANT 113 4.3.3 LAND
PRICES IN SPAIN 114 4.3.4 POLITICAL COSTS-NORTH AFRICAN SOLAR ENERGY AS
A "RELATIVE" ALTERNATIVE FOR EUROPE 115 4.3.4.1 EUROPEAN ALTERNATIVES IN
NEGOTIATIONS WITH NORTH AFRICAN COUNTRIES FOR POTENTIAL POWER PLANT
SITES 115 4.3.5 SPECIFIC LAND-AREA REQUIREMENTS 117 4.3.6 HORIZONTAL
SALT CIRCUITS 120 4.3.6.1 COSTS 220 4.3.7 DRY COOLING 121 4.3.7.1
LITERATURE REFERENCES TO DRY COOLING FOR SOLAR POWER PLANTS 123 4.3.7.2
LITERATURE REFERENCES TO DRY COOLING FOR CONVENTIONAL POWER PLANTS 125
4.3.8 TECHNICAL RELIABILITY 126 4.3.9 POWER TRANSMISSION VIA OVERHEAD
POWER LINES 127 4.4 CALCULATING THE POWER COSTS 129 4.4.1 CAPITAL COSTS,
NOMINAL OR REAL INTEREST, OPERATING LIFETIMES 130 X CONTENTS 6.2
NECESSARY MEASURES FOR THE PRECISE DETERMINATION OF COSTS IN MASS
PRODUCTION 285 6.3 STRETCHED-MEMBRANE HELIOSTATS 186 6.3.1 TECHNOLOGY
286 6.3.2 DEVELOPMENT ASPECTS 292 6.4 INSTALLATIONS FOR OPERATIONAL
TESTING OF THE HELIOSTATS 294 6.5 COMPARISON OF THE COST ASSUMPTIONS
WITH THOSE OF OTHER STUDIES 296 6.5.1 HELIOSTAT COSTS IN THE S&L STUDY
296 6.5.2 THE SANDIA HELIOSTAT STUDY 297 7 RECEIVERS 209 7.1 SOLAR TWO:
DEVELOPMENT REQUIREMENTS FOR THE "ADVANCED RECEIVER" 209 7.1.1 COSTS AND
BASIC TECHNOLOGY 209 7.1.1.1 COSTS 209 7.1.1.2 DESIGN AND FUNCTION 220
7.1.1.3 DEVELOPMENTAL REQUIREMENTS 222 7.1.2 SYSTEM DEVELOPMENT:
MOLTEN-SALT CIRCUITS AND RECEIVERS 224 7.1.2.1 MOLTEN-SALT CIRCUITS 225
7.1.2.2 THE DEVELOPMENT OF HYBRID BOILERS 227 7.1.2.3 A TEST
INSTALLATION FOR RECEIVER DEVELOPMENT 217 7.2 AIR RECEIVERS 228 7.2.1
TECHNOLOGY 228 7.2.2 DEVELOPMENT 225 7.2.2.1 AIRFLOW PIPING 225 7.2.2.2
HEAT STORAGE SYSTEMS 226 7.2.2.3 AIR-RECOVERY SYSTEM 226 7.2.2.4 TEST
INSTALLATION FOR RECEIVER DEVELOPMENT 227 8 CONTENTS XI 9 SOLAR UPDRAFT
POWER PLANTS 257 9.1 INTRODUCTORY REMARKS 251 9.2 THE PRINCIPLE 252 9.3
INVESTMENT AND POWER COSTS 256 9.4 DEVELOPMENT PROGRAM 259 9.4.1 THE
DEVELOPMENT OF COMPONENTS 259 9.4.1.1 THE CHIMNEY 260 9.4.1.2 HEAT
STORAGE 261 9.4.2 A DEMONSTRATION PLANT 262 9.4.3 DETAILED COST
ESTIMATES 263 9.4.4 DEVELOPMENT COSTS 264 10 FOSSIL-FUEL POWER PLANTS
265 10.1 NATURAL GAS PLANTS 266 10.1.1 INVESTMENT COSTS 266 10.1.2 GAS
COSTS 267 10.1.3 OPERATING AND MAINTENANCE COSTS 268 10.2 CONVENTIONAL
COAL-FIRED PLANTS 269 10.2.1 INVESTMENT COSTS 269 10.2.2 THE PRICE OF
COAL 270 10.2.3 PLANT EFFICIENCIES/CONTRIBUTION OF COAL PRICE TO POWER
COSTS 272 10.2.4 OPERATING AND MAINTENANCE COSTS 275 10.3 COAL-FIRED
PLANTS WITH CO 2 SEQUESTRATION 275 10.3.1 COST ESTIMATES ACCORDING TO
EIA AEO 2007 (WITHOUT STORAGE COSTS): TH XII CONTENTS 11.2.2 THE COST OF
COAL GASIFICATION (FOR H 2 PRODUCTION) 293 11.2.2.1 CONVENTIONAL AND
ADVANCED GASIFICATION 297 11.2.2.2 OPERATION AND MAINTENANCE (O&M) COSTS
298 11.2.3 THE ASSUMED COST OF CO 2 STORAGE 298 11.2.4 SYNGAS AS A
PARTICULARLY INEXPENSIVE SUBSTITUTE 300 11.2.5 BACKUP POWER PLANTS AS
CONSUMERS OF GAS-GAS TRANSPORT AND STORAGE COSTS 302 11.2.6 BACKUP POWER
PLANTS: SWITCHING TO OTHER FUELS WHEN GAS IS IN GREAT DEMAND-DEVELOPMENT
OF COMBUSTION CHAMBERS 304 11.2.7 DEVELOPMENT OF "ADVANCED TECHNOLOGY"
WITH A VIEW TO A GENERAL GAS SUPPLY AND IGCC POWER PLANTS-BARRIERS TO
DEVELOPMENT 305 11.2.7.1 GAS PURIFICATION AND SEPARATION 305 11.2.7.2
ADVANCED TECHNOLOGY FOR IGCC POWER PLANTS 307 11.2.7.3 DEVELOPMENT OF
GASIFICATION FACILITIES-THE HIGHER EFFICIENCY OF THE SHELL PROCESS 307
11.2.8 PRECONDITIONS FOR THE SUBSTITUTION OF NATURAL GAS BY H 2 OR
SYNGAS: MODIFICATION OF THE END-USER APPLIANCES AND THE TRANSPORT
NETWORKS 320 11.2.9 THE POSSIBLE EXTENT OF COAL GASIFICATION USING
SUBSTITUTABLE POWER-PLANT COAL 322 11.2.9. CONTENTS XIII 11.4.4 HYDROGEN
AND COAL FOR LIQUID ENERGY CARRIERS IN A FUTURE SOLAR-HYDROGEN ENERGY
SYSTEM 362 12 THE LARGE-SCALE USE OF NUCLEAR ENERGY 367 12.1 THE COSTS
OF NUCLEAR POWER-RESULTS 367 12.2 INVESTMENT COSTS UNDER MASS PRODUCTION
367 12.2.1 ESTIMATES ACCORDING TO THE "CHICAGO STUDY" 367 12.2.1.1
CONCLUSIONS FROM TABLE 12.1 376 12.2.2 A PROBLEM: THE LACK OF
COMPETITION AMONG SYSTEM MANUFACTURERS-THE CONTRAST TO SOLAR ENERGY 382
12.3 OPERATION AND MAINTENANCE COSTS; FUEL COSTS 383 12.3.1 OPERATION
AND MAINTENANCE (O&M) COSTS 383 12.3.2 ENRICHMENT AND OTHER FUEL COSTS,
NOT INCLUDING THE COST OF NATURAL URANIUM 384 12.4 CONSUMPTION AND COST
OF NATURAL URANIUM PER KWH EL 386 12.5 THE PROBLEMS ASSOCIATED WITH
NUCLEAR ENERGY 387 12.5.1 CONSEQUENCES OF THE DEVELOPMENT OF CENTRIFUGE
TECHNOLOGY 387 12.5.2 GENERAL PROBLEMS OF NUCLEAR POWER GENERATION 387
12.6 URANIUM RESERVES 390 12.6.1 LIFETIME OF THE RESERVES IN THE CASE OF
A MASSIVE INCREASE IN NUCLEAR POWER PRODUCTION 390 12.6.1. |
any_adam_object | 1 |
author | Vogel, Werner 1952- Kalb, Henry |
author_GND | (DE-588)133031608 |
author_facet | Vogel, Werner 1952- Kalb, Henry |
author_role | aut aut |
author_sort | Vogel, Werner 1952- |
author_variant | w v wv h k hk |
building | Verbundindex |
bvnumber | BV036473492 |
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classification_tum | ERG 720f |
ctrlnum | (OCoLC)699804057 (DE-599)DNB997573325 |
dewey-full | 621.31244 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.31244 |
dewey-search | 621.31244 |
dewey-sort | 3621.31244 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Maschinenbau / Maschinenwesen Energietechnik, Energiewirtschaft Elektrotechnik / Elektronik / Nachrichtentechnik Energietechnik |
format | Book |
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id | DE-604.BV036473492 |
illustrated | Illustrated |
indexdate | 2024-11-25T17:37:10Z |
institution | BVB |
isbn | 9783527405152 |
language | English German |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-020345132 |
oclc_num | 699804057 |
open_access_boolean | |
owner | DE-1046 DE-11 DE-83 DE-92 DE-634 DE-91S DE-BY-TUM DE-573 DE-703 DE-898 DE-BY-UBR DE-29T DE-859 DE-91G DE-BY-TUM DE-Aug4 |
owner_facet | DE-1046 DE-11 DE-83 DE-92 DE-634 DE-91S DE-BY-TUM DE-573 DE-703 DE-898 DE-BY-UBR DE-29T DE-859 DE-91G DE-BY-TUM DE-Aug4 |
physical | XXX, 477 S. Ill., graph. Darst., Kt. |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Wiley-VCH |
record_format | marc |
spellingShingle | Vogel, Werner 1952- Kalb, Henry Large-scale solar thermal power technologies, costs and development Sonnenkraftwerk (DE-588)4055583-5 gnd |
subject_GND | (DE-588)4055583-5 |
title | Large-scale solar thermal power technologies, costs and development |
title_auth | Large-scale solar thermal power technologies, costs and development |
title_exact_search | Large-scale solar thermal power technologies, costs and development |
title_full | Large-scale solar thermal power technologies, costs and development Werner Vogel and Henry Kalb |
title_fullStr | Large-scale solar thermal power technologies, costs and development Werner Vogel and Henry Kalb |
title_full_unstemmed | Large-scale solar thermal power technologies, costs and development Werner Vogel and Henry Kalb |
title_short | Large-scale solar thermal power |
title_sort | large scale solar thermal power technologies costs and development |
title_sub | technologies, costs and development |
topic | Sonnenkraftwerk (DE-588)4055583-5 gnd |
topic_facet | Sonnenkraftwerk |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3367544&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020345132&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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