Renewable energy: its physics, engineering, use, environmental impacts, economy and planning aspects
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
San Diego [u.a.]
Acad. Press
2000
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Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVII, 912 S. graph. Darst., Kt. |
ISBN: | 0126561524 |
Internformat
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Datensatz im Suchindex
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adam_text | CONTENTS PREFACE TO SECOND AND FIRST EDITIONS V CONTENTS IX UNITS AND
CONVERSION TABLES XV 1 PERSPECTIVE J 1.1 INTRODUCTION J 1.1.1 THE ENERGY
SCENE J 1.1.2 MAN S ENERGY HISTORY . 3 1.1.3 THE ENERGY FUTURE Q 1.2
WHY RENEWABLE ENERGY? 16 2 THE ORIGIN OF RENEWABLE ENERGY FLOWS 19 2.1
SOLAR RADIATION 19 2.1.1 ENERGY PRODUCTION IN THE INTERIOR OF STARS LIKE
20 THE SUN 2.1.2 SPECTRAL COMPOSITION OF SOLAR RADIATION 21 THE
STRUCTURE OF THE SOLAR SURFACE; RADIATION RECEIVED AT THE EARTH 2.2 NET
RADIATION FLUX AT THE EARTH. 26 2.2.1 RADIATION AT THE TOP OF THE
ATMOSPHERE 26 THE DISPOSITION OF INCOMING RADIATION 2.2.2 RADIATION AT
THE EARTH S SURFACE 33 DIRECT AND SCATTERED RADIATION; DISPOSITION OF
THE RADIA- TION AT THE EARTH S SURFACE; DISPOSITION OF RADIATION IN THE
ATMOSPHERE; YEARLY, SEASONAL AND DIURNAL VARIATIONS IN THE RADIATION
FLUXES AT THE EARTH S SURFACE; PENETRATION OF SOLAR RADIATION 2.3
PHYSICAL AND CHEMICAL PROCESSES NEAR THE EARTH S SURFACE 50 2.3.1 THE
ATMOSPHERE 50 PARTICLES IN THE ATMOSPHERE; ABSORPTION AND SCATTERING IN
THE ATMOSPHERE; ABSORPTION PROCESSES IN DIFFERENT FRE- QUENCY REGIONS;
MODELS FOR THE DESCRIPTION OF SCATTERED RADIATION; THE TYPES OF STORED
ENERGY; TOTAL ENERGY FLUXES; ENERGY TRANSFER PROCESSES; VERTICAL
TRANSPORT IN THE EARTH-ATMOSPHERE BOUNDARY LAYER; THE DESCRIPTION OF AT-
MOSPHERIC MOTION; TIME AVERAGING; FEATURES OF THE OBSERVED ATMOSPHERIC
CIRCULATION; ENERGY CONVERSION PROC- ESSES AND THE SEPARATION OF SCALES
OF MOTION; CREATION AND DESTRUCTION OF KINETIC ENERGY; MODELS OF GENERAL
ATMOS- PHERIC CIRCULATION 2.3.2 THE OCEANS AND CONTINENTS 88 THE WATER
CYCLE; EVAPORATION PROCESSES; THE STATE VARIABLES OF THE OCEANS; SCALES
OF OCEANIC MOTION; JOINT MODELS OF GENERAL CIRCULATION IN OCEANS AND
ATMOSPHERE 2.3.3 THE CLIMATE 117 CLIMATE VARIABLES; STABILITY OF
CLIMATE; THE ERGODIC HY- POTHESIS 2.4 THE ENERGY CYCLE OF THE EARTH 123
2.4.1 THE FLOWS OF ENERGY AND MATTER 123 THE UNDISTURBED ENERGY CYCLE;
MAN S INTERFERENCE WITH THE ENERGY CYCLE; MATTER CYCLES; THE CARBON
CYCLE; THE NITRO- GEN CYCLE 2.4.2 CLIMATE CHANGES 136 CLIMATIC HISTORY;
CAUSES OF CLIMATIC CHANGE; THE WHITE EARTH STATE; MAN S INTERFERENCE
WITH CLIMATE; AEROSOLS; CARBON DIOXIDE 2. A ORIGINS OF STELLAR ENERGY
156 THE BIRTH AND MAM-SEQUENCE STAGE OF A STAR; THE RED-GIANT AND
SHELL-BURNING STAGES; EQUILIBRIUM PROCESSES AND SU- PERNOVAE
EXPLOSIO)IS; THE FORMATION OF HEAVY ELEMENTS; EQUILIBRIUM PROCESSES IN
THE SUN; THE ENERGY TRANSPORT EQUATIONS; NUCLEAR REACTIONS IN THE SUN; A
MODEL OF THE SOLAR PROCESSES; COSMOLOGY; THE BIG-BANG MODEL; THE
COSMIC BACKGROUND RADIATION 2.B VERTICAL TRANSPORT IN OR NEAR THE
BOUNDARY LAYER 178 WATER TRANSPORT; THE DISPOSITION OF WATER AND HEAT IN
SOILS; GEOTHERMAL HEAT FLUXES; MOMENTUM EXCHANGE PROC- ESSES BETWEEN
ATMOSPHERE AND OCEANS 2.C MODELLING THE ATMOSPHERE AND THE OCEANS 186
THE BASIC EQUATIONS IN TERMS OF TIME-AVERAGED VARIABLES; THE ATMOSPHERIC
HEAT SOURCE FUNCTION; SEPARATION OF SCALES OF MOTION; ENERGY CONVERSION
PROCESSES IN THE ATMOSPHERE; MODELLING THE OCEANS; BASIC EQUATIONS
GOVERNING THE OCE- ANIC CIRCULATION 2.D TIDES AND WAVES 199 GRAVITY
WAVES IN THE OCEANS; THE FORMATION AND DISSIPA- TION OF ENERGY IN WAVE
MOTION; THE ENERGY FLUX ASSOCIATED WITH WAVE MOTION; WIND-DRIVEN OCEANIC
MOTION 2.5 SUGGESTED TOPICS FOR DISCUSSION 210 3 THE INDIVIDUAL ENERGY
SOURCES 213 3.1 SOLAR RADIATION 213 3.1.1 DIRECT RADIATION 213
DEPENDENCE ON TURBIDITY AND CLOUD COVER 3.1.2 SCATTERED RADIATION 218
3.1.3 TOTAL SHORT-WAVELENGTH RADIATION 221 REFLECTED RADIATION; AVERAGE
BEHAVIOUR OF TOTAL SHORT- WAVELENGTH RADIATION 3.1.4 LONG-WAVELENGTH
RADIATION. 230 EMPIRICAL EVIDENCE FOR INCLINED SURFACES 3.1.5
VARIABILITY OF SOLAR RADIATION 235 GEOGRAPHICAL DISTRIBUTION OF SOLAR
POWER; POWER DURATION CURVES 3.2 WIND 240 3.2.1 WIND VELOCITIES 240 THE
HORIZONTAL WIND PROFILE; WIND SPEED DATA 3.2.2 KINETIC ENERGY IN THE
WIND 249 3.2.3 POWER IN THE WIND 251 3.2.4 VARIABILITY IN WIND POWER 254
POWER DURATION CURVES 3.3 OCEAN WAVES 259 3.3.1 WAVE SPECTRA 260 3.3.2
POWER IN THE WAVES 264 WAVES IN A CLIMATIC CONTEXT 3.4 WATER FLOWS AND
TIDES 268 3.4.1 OCEAN CURRENTS 268 VARIABILITY IN CURRENT POWER 3.4.2
RIVER FLOWS, HYDROPOWER AND ELEVATED WATER STORAGE 274 GEOGRAPHICAL
DISTRIBUTION OF HYDROPOWER RESOURCES; EN- VIRONMENTAL IMPACT 3.4.3 TIDES
278 3.5 HEAT FLOWS AND STORED HEAT 281 3.5.1 SOLAR-DERIVED HEAT SOURCES
282 THE POWER IN OCEAN THERMAL GRADIENTS; TEMPERATURE GRADIENTS IN UPPER
SOIL AND AIR 3.5.2 GEOTHERMAL FLOWS AND STORED ENERGY 289 REGIONS OF
PARTICULARLY HIGH HEAT FLOW; THE ORIGIN OF GEO- THERMAL HEAT;
DISTRIBUTION OF THE SMOOTHLY VARYING PART OF THE HEAT FLOW 3.6
BIOLOGICAL CONVERSION AND STORAGE OF ENERGY 296 3.6.1 PHOTOSYNTHESIS 297
MECHANISM OF GREEN PLANT PHOTOSYNTHESIS; EFFICIENCY OF CONVERSION;
BACTERIAL PHOTOSYNTHESIS 3.6.2 PRODUCTIVITY IN DIFFERENT ENVIRONMENTS
303 ECOLOGICAL SYSTEMS; LIMITING FACTORS; PRODUCTIVITY DATA 3.7 OTHER
ENERGY SOURCES. 314 3.7.1 ATMOSPHERIC ELECTRICITY 314 3.7.2 SALINITY
DIFFERENCES 316 3.7.3 NUCLEAR ENERGY 319 3.8 SUGGESTED TOPICS FOR
DISCUSSION 323 4 THE ENERGY CONVERSION PROCESSES 325 4.1 PRINCIPLES OF
ENERGY CONVERSION 325 4.1.1 CONVERSION BETWEEN ENERGY FORMS 325
IRREVERSIBLE THERMODYNAMICS; EFFICIENCY OF AN ENERGY CON- VERSION DEVICE
4.1.2 THERMODYNAMIC ENGINE CYCLES 334 4.1.3 THERMOELECTRIC AND
THERMIONIC CONVERSION 337 THERMOELECTRIC GENERATORS; THERMIONIC
GENERATORS 4.1.4 TURBINES AND OTHER FLOW-DRIVEN CONVERTERS 341 FREE
STREAM FLOW TURBINES; MAGNETOHYDRODYNAMIC CON- VERTERS 4.1.5
PHOTOVOLTAIC CONVERSION 346 THE P*N JUNCTION; SOLAR CELLS;
MONOCRYSTALLINE AND MULTI- CRYSTALLINE CELLS; STACKED CELLS; AMORPHOUS
CELLS; ORGANIC SOLAR CELLS 4.1.6 ELECTROCHEMICAL CONVERSION 359 FUEL
CELLS; OTHER ELECTROCHEMICAL CONVERSION SCHEMES 4.2 CONVERSION OF SOLAR
RADIATION 364 4.2.1 HEAT GENERATION 364 FLAT-PLATE COLLECTORS; STALLED
AND OPERATING COLLECTOR; HEAT EXCHANGE; FLAT-PLATE COLLECTOR WITH HEAT
STORAGE; CON- CENTRATING COLLECTORS AND TRACKING SYSTEMS; ENERGY COL-
LECTION FROM FOCUSING SYSTEMS 4:2.2 APPLICATIONS FOR COOLING, PUMPING,
ETC. 388 4.2.3 ELECTRICITY GENERATION 392 PHOTO-THERMOELECTRIC
CONVERTERS; PHOTOVOLTAIC CONVERTERS; MODULE CONSTRUCTION;
MONOCRYSTALLINE SILICON CELLS; MUL- TICRYSTALLINE CELLS; AMORPHOUS
CELLS; OTHER MATERIALS AND OTHER THIN-FILM CELLS; OPTICAL SUBSYSTEM AND
CONCENTRATORS; USE OF RESIDUAL ENERGY 4.3 CONVERSION OF WIND ENERGY 413
4.3.1 CONVERSION OF WIND FLOW 413 4.3.2 PROPELLER-TYPE CONVERTERS 417
THEORY OF NON-INTERACTING STREAM-TUBES; MODEL BEHAVIOUR OF POWER OUTPUT
AND MATCHING TO LOAD; NON-UNIFORM WIND VELOCITY; RESTORATION OF WIND
PROFILE IN WAKE, AND IMPLICA- TIONS FOR TURBINE ARRAYS 4.3.3 CROSS-WIND
CONVERTERS 437 PERFORMANCE OF A DARRIEUS-TYPE CONVERTER 4.3.4 AUGMENTERS
AND OTHER ADVANCED CONVERTERS 442 DUCTED ROTOR; ROTOR WITH TIP-VANES;
OTHER CONCEPTS 4.3.5 HEAT, ELECTRICAL OR MECHANICAL POWER, AND FUEL
GENERATION 447 4.4 CONVERSION OF WAVE ENERGY 449 4.4.1 PNEUMATIC
CONVERTER 449 4.4.2 OSCILLATING VANE CONVERTER 4.5 CONVERSION OF WATER
FLOWS OR ELEVATED WATER 456 4.6 CONVERSION OF HEAT 459 4.6.1 APPLICATION
TO HEATING 459 HEAT PUMPS 4.6.2 CONVERSION OF HEAT INTO WORK OR
ELECTRICITY 462 CONVERSION OF HEAT FROM SOLAR COLLECTORS; ERICSSON
HOT-AIR ENGINE; CONVERSION OF GEOTHERMAL HEAT; CONVERSION OF OCEAN
THERMAL ENERGY 4.7 CONVERSION OF FUELS 467 4.7.1 FUEL CELL TECHNOLOGIES
467 4.8 CONVERSION OF BIOLOGICAL MATERIAL 471 4.8.1 HEAT PRODUCTION FROM
BIOMASS 473 PRODUCING HEAT BY BURNING; COMPOSTING; METABOLIC HEAT 4.8.2
FUEL PRODUCTION FROM BIOMASS: OVERVIEW AND GENERATION OF GASEOUS FUELS
480 BIOGAS; THERMOCHEMICAL GASIFICATION OF BIOMASS 4.8.3 FUEL PRODUCTION
FROM BIOMASS: GENERATION OF LIQUID BIOFUELS 498 DIRECT PHOTOSYNTHETIC
PRODUCTION OF HYDROCARBONS; ALCO- HOL FERMENTATION; METHANOL FROM
BIOMASS 9 OTHER CONVERSION PROCESSES 506 4.9.1 CONVERSION OF SALINITY
GRADIENT RESOURCES 507 4.A ENERGY BANDS IN SEMICONDUCTORS 509 4.10
SUGGESTED TOPICS FOR DISCUSSION 515 5 ENERGY TRANSMISSION AND STORAGE
519 5.1 ENERGY TRANSMISSION 519 5.1.1 TRANSMISSION OF HEAT 520 DISTRICT
HEATING LINES; HEAT PIPES 5.1.2 TRANSMISSION OF ELECTRICITY 522 NORMAL
CONDUCTING LINES; SUPERCONDUCTING LINES 5.1.3 OTHER TYPES OF
TRANSMISSION 525 5.2 ENERGY STORAGE 525 5.2.1 STORAGE OF HEAT 526 HEAT
CAPACITY STORAGE; SOLAR PONDS AND AQUIFER STORAGE; LATENT HEAT STORAGE
ASSOCIATED WITH STRUCTURAL OR PHASE CHANGE 5.2.2 STORAGE OF HIGH-QUALIT
Y ENERGY FORMS 551 PUMPED HYDRO STORAGE; FLYWHEELS; COMPRESSED GAS STOR-
AGE; HYDROGEN STORAGE; BATTERIES 5.3 SUGGESTED TOPICS FOR DISCUSSION 585
6 ENERGY SUPPLY SYSTEMS 587 6.1 ENERGY SYSTEMS 587 6.2 SIMULATION OF
SYSTEM PERFORMANCE 588 6.2.1 TREATMENT OF THE TIME VARIABLE 588 6.2.2
LOAD STRUCTURE 591 BIOLOGICALLY ACCEPTABLE SURROUNDINGS; FOOD AND WATER;
SE- CURITY; HEALTH; RELATIONS; ACTIVITIES; SUMMARY OF END-USE ENERGY
REQUIREMENTS 6.2.3 SOURCE DATA 613 6.2.4 PHOTOVOLTAIC POWER PRODUCTION
615 6.2.5 WIND POWER PRODUCTION 619 6.2.6 FOOD PRODUCTION 626 6.2.7
BIOFUEL PRODUCTION 631 6.2.8 SYSTEM CHOICE 636 6.3 EXAMPLES OF LOCAL
SYSTEM SIMULATIONS 638 6.3.1 SOLAR HEAT-PRODUCING SYSTEMS 638 HEAT LOAD
OF AN INDIVIDUAL HOUSE; SOLAR HEAT SYSTEM FOR DE- TACHED ONE-FAMILY
HOUSE; RESULTS OF SIMULATION; DEPEN- DENCE ON ORIENTATION OF COLLECTOR;
DEPENDENCE ON SOLAR COLLECTOR PROPERTIES; DEPENDENCE ON COLLECTOR AREA
AND STORAGE VOLUME; LOAD ADJUSTMENTS; DEPENDENCE ON STORAGE SHAPE AND
INSULATION; COMMUNITY-SIZE SYSTEMS; HOT WATER SYSTEMS; HEAT PUMP SYSTEMS
6.3.2 WIND ELECTRICITY SYSTEMS 668 SYSTEM WITHOUT ENERGY STORAGE;
REGULATION OF A FUEL-BASED BACK-UP SYSTEM; RESULTS OF SIMULATION;
STOCHASTIC MODEL; WIND FORECASTING MODEL; SYSTEMS WITH SHORT-TERM
STORAGE; SIMULATION STUDIES; SYSTEMS IVITH LONG-TERM STORAGE 6.4 A
GLOBAL ENERGY SCENARIO 695 6.4.1 DECENTRALISED RENEWABLE ENERGY 2050
SCENARIO 696 6.4.2 CENTRALISED RENEWABLE ENERGY 2050 SCENARIO 705 6.4.3
IMPLEMENTATION AND RESILIENCE OF SCENARIO 721 6.5 SUGGESTED TOPICS FOR
DISCUSSION 724 7 SOCIO-ECONOMIC ASSESSMENT OF ENERGY SUPPLY SYSTEMS 729
7.1 FRAMEWORK OF SOCIO-ECONOMIC ANALYSIS 729 7.1.1 SOCIAL VALUES AND THE
INTRODUCTION OF MONETARY ECONOMIES 730 7.1.2 ECONOMIC THEORY 732
PRODUCTION PLANNING; DISTRIBUTION PROBLEMS; ACTUAL PRIC- ING POLICIES
7.2 DIRECT COST EVALUATION 739 7.2.1 TREATMENT OF INFLATION 740 7.2.2
PRESENT VALUE CALCULATIONS 741 7.2.3 COST PROFILES AND BREAK-EVEN PRICES
742 7.3 INDIRECT ECONOMICS 747 7.3.1 RESOURCE AND ENVIRONMENTAL
MANAGEMENT 747 ENERGY ANALYSIS; SOCIAL INTEREST RATE 7.3.2 REGIONAL
ECONOMY 752 7.3.3 NATIONAL ECONOMY 754 EMPLOYMENT; USE OF SUBSIDIES FOR
INTRODUCING APPROPRIATE TECHNOLOGY 7.3.4 WORLD ECONOMY 760 7.4
LIFE-CYCLE ANALYSIS 762 7.4.1 DEFINING PURPOSE AND SCOPE OF LCA 763
7.4.2 TREATMENT OF IMPORT AND EXPORT 766 7.4.3 WHAT TO INCLUDE IN AN
LCA? 770 QUALITATIVE OR QUANTITATIVE ESTIMATES OF IMPACTS; TREAT- MENT
OF RISK-RELATED IMPACTS AND ACCIDENTS IN LCA 7AA CHOOSING THE CONTEXT
775 7.4.5 AGGREGATION ISSUES 776 SOCIAL CONTEXT 7.4.6 MONETISING ISSUES
782 STATISTICAL VALUE OF LIFE; DEPRECIATION 7A.7 CHAIN CALCULATIONS 785
7.4.8 MATRIX CALCULATIONS 789 MARGINAL VERSUS SYSTEMIC CHANGE 7.4.9
COMMUNICATING WITH DECISION-MAKERS 792 7.4.10 APPLICATION OF LIFE-CYCLE
ANALYSIS 796 7.4.11 LCA OF GREENHOUSE GAS EMISSIONS 796 GREENHOUSE
WARMING IMPACTS 7.4.12 LCA OF POWER PRODUCTION CHAINS 809 FOSSIL FUEL
CLIAINS; NUCLEAR FUEL CHAIN; RENEWABLE ENERGY CHAINS; LCA OF ROAD
TRAFFIC 7.4.13 LCA OF ENERGY SYSTEMS 834 ENVIRONMENTALLY SUSTAINABLE
SCENARIO; FAIR MARKET SCE- NARIO; COMPARISON OF SCENARIO IMPACTS 7.5
EXAMPLES OF BREAK-EVEN PRICE ESTIMATIONS 851 7.5.1 WIND POWER SYSTEM
WITHOUT ENERGY STORAGE 851 ADDITIONAL COSTS OF REGULATION 7.5.2 ENERGY
SYSTEMS WITH STORAGE 858 7.6 SUGGESTED TOPICS FOR DISCUSSION 863 8
WINDING UP 865 CONVERSION OF RENEWABLE ENERGY SOURCES; ENERGY STORAGE
AND AUXILIARIES; FINALE REFERENCES 868 SUBJECT INDEX 900
|
any_adam_object | 1 |
author | Sørensen, Bent |
author_facet | Sørensen, Bent |
author_role | aut |
author_sort | Sørensen, Bent |
author_variant | b s bs |
building | Verbundindex |
bvnumber | BV023778678 |
classification_rvk | ZP 3700 |
ctrlnum | (OCoLC)611537414 (DE-599)BVBBV023778678 |
discipline | Energietechnik |
edition | 2. ed. |
format | Book |
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id | DE-604.BV023778678 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:36:37Z |
institution | BVB |
isbn | 0126561524 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-017420890 |
oclc_num | 611537414 |
open_access_boolean | |
owner | DE-83 |
owner_facet | DE-83 |
physical | XVII, 912 S. graph. Darst., Kt. |
publishDate | 2000 |
publishDateSearch | 2000 |
publishDateSort | 2000 |
publisher | Acad. Press |
record_format | marc |
spelling | Sørensen, Bent Verfasser aut Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects Bent Sørensen 2. ed. San Diego [u.a.] Acad. Press 2000 XVII, 912 S. graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Energieplanung (DE-588)4191686-4 gnd rswk-swf Physik (DE-588)4045956-1 gnd rswk-swf Wirtschaftlichkeit (DE-588)4066424-7 gnd rswk-swf Energieversorgung (DE-588)4014736-8 gnd rswk-swf Energieerzeugung (DE-588)4070813-5 gnd rswk-swf Recycling (DE-588)4076573-8 gnd rswk-swf Nachhaltigkeit (DE-588)4326464-5 gnd rswk-swf Umweltverträglichkeit (DE-588)4061655-1 gnd rswk-swf Erneuerbare Energien (DE-588)4068598-6 gnd rswk-swf Energietechnik (DE-588)4014725-3 gnd rswk-swf Energievorrat (DE-588)4070814-7 gnd rswk-swf Energietechnik (DE-588)4014725-3 s DE-604 Erneuerbare Energien (DE-588)4068598-6 s Nachhaltigkeit (DE-588)4326464-5 s Umweltverträglichkeit (DE-588)4061655-1 s Wirtschaftlichkeit (DE-588)4066424-7 s Energieplanung (DE-588)4191686-4 s Physik (DE-588)4045956-1 s 1\p DE-604 Energieversorgung (DE-588)4014736-8 s Recycling (DE-588)4076573-8 s 2\p DE-604 Energievorrat (DE-588)4070814-7 s 3\p DE-604 Energieerzeugung (DE-588)4070813-5 s 4\p DE-604 SWB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017420890&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 4\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Sørensen, Bent Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects Energieplanung (DE-588)4191686-4 gnd Physik (DE-588)4045956-1 gnd Wirtschaftlichkeit (DE-588)4066424-7 gnd Energieversorgung (DE-588)4014736-8 gnd Energieerzeugung (DE-588)4070813-5 gnd Recycling (DE-588)4076573-8 gnd Nachhaltigkeit (DE-588)4326464-5 gnd Umweltverträglichkeit (DE-588)4061655-1 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Energietechnik (DE-588)4014725-3 gnd Energievorrat (DE-588)4070814-7 gnd |
subject_GND | (DE-588)4191686-4 (DE-588)4045956-1 (DE-588)4066424-7 (DE-588)4014736-8 (DE-588)4070813-5 (DE-588)4076573-8 (DE-588)4326464-5 (DE-588)4061655-1 (DE-588)4068598-6 (DE-588)4014725-3 (DE-588)4070814-7 |
title | Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects |
title_auth | Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects |
title_exact_search | Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects |
title_full | Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects Bent Sørensen |
title_fullStr | Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects Bent Sørensen |
title_full_unstemmed | Renewable energy its physics, engineering, use, environmental impacts, economy and planning aspects Bent Sørensen |
title_short | Renewable energy |
title_sort | renewable energy its physics engineering use environmental impacts economy and planning aspects |
title_sub | its physics, engineering, use, environmental impacts, economy and planning aspects |
topic | Energieplanung (DE-588)4191686-4 gnd Physik (DE-588)4045956-1 gnd Wirtschaftlichkeit (DE-588)4066424-7 gnd Energieversorgung (DE-588)4014736-8 gnd Energieerzeugung (DE-588)4070813-5 gnd Recycling (DE-588)4076573-8 gnd Nachhaltigkeit (DE-588)4326464-5 gnd Umweltverträglichkeit (DE-588)4061655-1 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Energietechnik (DE-588)4014725-3 gnd Energievorrat (DE-588)4070814-7 gnd |
topic_facet | Energieplanung Physik Wirtschaftlichkeit Energieversorgung Energieerzeugung Recycling Nachhaltigkeit Umweltverträglichkeit Erneuerbare Energien Energietechnik Energievorrat |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017420890&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT sørensenbent renewableenergyitsphysicsengineeringuseenvironmentalimpactseconomyandplanningaspects |