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2010, World Bank Study, ISBN 9780821385043, xx, 99
Wind power | Renewable energy sources | DISTRIBUTION SYSTEM | WIND POWER PRODUCTION | POWER PROJECT | DEMAND PEAKS | RESIDUAL FUEL OIL | ENERGY MARKET | WIND FARMS | RENEWABLE SOURCE | ECOSYSTEMS | CARBON INTENSITY | CLIMATE | METEOROLOGICAL RESEARCH | WIND | ELECTROSTATIC PRECIPITATOR | ENERGY NEEDS | BALANCE | PRECIPITATION | WIND REGIME | CALCULATION | CAPACITY FACTOR | ELECTRICITY GENERATION PLANT | COST OF WIND POWER | WIND VELOCITY | FOSSIL | WIND RESOURCES | RENEWABLE ENERGY SOURCE | RENEWABLE ENERGY RESOURCES | TAX EXEMPTIONS | COAL PLANTS | COMBUSTION SYSTEMS | ENERGY ALTERNATIVES | PEAK POWER | FUEL OIL | CLIMATE CHANGE | WIND DATA | ENERGY TECHNOLOGY | WIND ENERGY RESOURCES | ADEQUATE COMPENSATION | POWER SUPPLY | ASH | CONVERGENCE | PARTICULATE MATTER | POWER SYSTEMS | RAW MATERIALS | WIND SPEEDS | TRANSPORT SECTOR | CARBON FOOTPRINT | COAL EXPORTS | POWER COSTS | METEOROLOGY | POWER | CARBON TRADE | WIND TURBINES | CLEAN COAL TECHNOLOGY | ENERGY PLANNING | COAL POWER PLANTS | AVAILABILITY | RENEWABLE RESOURCES | CARBON MARKET | HYDROPOWER PLANT | DOMESTIC COAL | WIND POTENTIAL | EMISSIONS | CLEAN TECHNOLOGY | SULFUR | THERMAL CAPACITY | LOW SULFUR COAL | CLEAN TECHNOLOGIES | POWER CURVE | WIND GENERATION | RENEWABLE ENERGY | DOMESTIC NATURAL GAS | EFFICIENT USE | HYDROLOGY | RAINFALL | THERMAL POWER | WIND PROJECTS | CYCLE GAS | HYDRO PLANT | SOURCE OF ENERGY | ENERGY RESOURCES | POWER PLANT | CLEAN TECHNOLOGY FUND | GAS TURBINES | WIND POWER POTENTIAL | POWER GENERATION CAPACITY | RENEWABLE ENERGY SOURCES | GAS | OIL RESERVES | GREENHOUSE | HYDROPOWER UNITS | CARBON REVENUES | GAS RESERVES | WIND FLOW | ELECTRICITY DEMAND | TEMPERATURE | POWER GRID | PIPELINE | RESIDUAL FUEL | RENEWABLE ENERGIES | POWER SYSTEM | CARBON CAPTURE | APPROACH | POWER CAPACITY | CERTIFIED EMISSION REDUCTIONS | ENVIRONMENTAL ISSUES | SUSTAINABLE DEVELOPMENT | ELECTRICITY GENERATION | BARRELS PER DAY | GAS TURBINE | WATER CYCLE | PEAK LOAD | POWER MIX | OIL EQUIVALENT | GCM | PEAK DEMAND | ELECTRIFICATION | CATALYTIC REDUCTION | CLEAN DEVELOPMENT MECHANISM | POWER SECTOR | GLOBAL CARBON MARKET | PARTICULATE | LEVEL OF EMISSIONS | CARBON DIOXIDE | WIND ENERGY POTENTIAL | EFFICIENT USE OF ENERGY | MINI GRID | GROSS DOMESTIC PRODUCT | WIND ENERGY PROJECTS | WIND TURBINE | FOSSIL FUEL | WIND RESOURCE | CARBON FUND | GREENHOUSE GAS | RENEWABLE SOURCES | GASES | RENEWABLE POWER | TOTAL ENERGY | TURBINE DESIGN | ENERGY PRODUCERS | ENERGY PRODUCTION | NATIONAL GRID | CARBON CREDITS | GENERAL CIRCULATION MODEL | ELECTRICITY SUPPLY | EMISSION REDUCTION | COAL PRODUCTION | ELECTRICITY | PLANT OUTPUT | VOLTAGE | ENERGY DEMAND | WIND PROJECT | CO2 | HYDROPOWER | FUEL SWITCH | INCOME | GASIFICATION | NATURAL GAS | TURBINE COMPONENTS | FOSSIL FUELS | NATURAL GAS PLANTS | GAS SUPPLIES | ANNUAL ELECTRICITY | DEMAND FOR ENERGY | INTERNATIONAL ENERGY AGENCY | CARBON | ESP | ANTHRACITE | COAL PRICE | POWER GENERATION TECHNOLOGIES | DOMESTIC ENERGY | ENERGY POLICY | ENERGY SOURCES | CONVENTIONAL POWER PLANTS | WIND POWER CAPACITY | FLUE GAS DESULFURIZATION | RETROFITTING | SOX | WIND SPEED | CLEAN COAL | GHG | COAL | DROUGHT | WIND POWER PROJECT | RENEWABLE ENERGY TECHNOLOGIES | CAPACITY FACTORS | GRID ELECTRIFICATION | FUEL | SULFUR CONTENT | FOSSIL FUEL PRICES | TRANSMISSION SYSTEM | COLORS | ELECTRICITY PRICES | WINDS | POWER GENERATION | WIND POWER | COGENERATION | METEOROLOGICAL STATIONS | OIL | WIND POWER PLANTS | SULFUR OXIDE | POWER DEMAND | COAL COMBUSTION | EMISSION | FLUE GAS | WIND GENERATORS | CAPACITY FACTOR INCREASES | WIND FARM | WIND DIRECTION | HYDRO POWER | POWER PRODUCER | PROVEN RESERVES | DISTRIBUTION OF ENERGY | GAS DISTRIBUTION | CONVENTIONAL TECHNOLOGIES | WIND SECTOR | CARBON ENERGY | AMOUNT OF POWER | CLEAN DEVELOPMENT | IPCC | WIND ENERGY | GRID INTEGRATION | ELECTRICITY CONSUMPTION | WIND POWER GENERATION | COAL RESERVES | FRAMEWORK CONVENTION ON CLIMATE CHANGE | DIESEL | KILOWATT HOUR | POWER SOURCES
Book
Energy policy, ISSN 0301-4215, 04/2014, Volume 67, pp. 301 - 318
Wind turbine manufacturing | China | Technological innovation system | Economics | Environmental Studies | Social Sciences | Life Sciences & Biomedicine | Technology | Business & Economics | Environmental Sciences & Ecology | Energy & Fuels | Science & Technology | Environmental Sciences | Natural energy | General, economic and professional studies | Energy | Exact sciences and technology | Energy economics | Applied sciences | Economic data | Usage | Competition (Economics) | Air-turbines | Technological innovations | Analysis | Studies | Technological change | Manufacturers | Wind farms | Expansion | Turbines | Exports | Competition | International trade | Product innovation | Domestic | Markets | Wind turbines | Wind power
Journal Article
2014, ISBN 9780300192162, x, 280
Reconstruction (U.S. history, 1865-1877) | Atlanta (Ga.) Social conditions | Atlanta (Ga.) Race relationsHistory | Civilians in war | Atlanta (Ga.) CommerceHistory | Atlanta (Ga.) History, Military | Georgia HistorySocial aspects | United States HistoryInfluence | History | United States HistorySocial aspects | Social change | Economics | United States | Reconstruction (U.S. history, 1865–1877) | Commerce | Social aspects | Atlanta | History, Military | Influence | Georgia | 19th century | Social conditions | Race relations | Atlanta (Ga.) | Civil War, 1861–1865
Book
Global change biology, ISSN 1354-1013, 04/2010, Volume 16, Issue 4, pp. 1213 - 1228
hypoxia | upwelling intensification | jellyfish outbreaks | ENSO | ecosystem regime shift | sardines | climate change | greenhouse gas | Climate change | Ecosystem regime shift | Greenhouse gas | Jellyfish outbreaks | Upwelling intensification | Hypoxia | Sardines | Life Sciences & Biomedicine | Biodiversity Conservation | Environmental Sciences & Ecology | Ecology | Biodiversity & Conservation | Science & Technology | Environmental Sciences | Fundamental and applied biological sciences. Psychology | Biological and medical sciences | General aspects | Synecology | Animal and plant ecology | Animal, plant and microbial ecology | Trade-winds | Climate | Global temperature changes | Fishes | Analysis | Upwelling (Oceanography) | Environmental aspects | Air pollution | Continents | Greenhouse gases | Atmospheric carbon dioxide | Coastal plains | Marine ecology | Aquatic ecosystems
Journal Article
Journal of advances in modeling earth systems, ISSN 1942-2466, 2020, Volume 12, Issue 12, pp. e2020MS002183 - n/a
shallow convection | trade wind | wind shear | large-eddy simulation | cumulus | large‐eddy simulation | Meteorology & Atmospheric Sciences | Physical Sciences | Science & Technology | Cloud Physics and Chemistry | Boundary Layer Processes | Clouds and Aerosols | Atmospheric Composition and Structure | Atmospheric Processes | Large Eddy Simulation | Clouds and Cloud Feedbacks
Journal Article
Journal of climate, ISSN 0894-8755, 6/2017, Volume 30, Issue 12, pp. 4395 - 4411
Intertropical convergence zone | Precipitation | Climate sensitivity | Energy transport | Atmosphere-ocean interaction | Heat budgets/fluxes | Meteorology & Atmospheric Sciences | Physical Sciences | Science & Technology | Damping | Sea surface | Wind | Temperature | Turbulent flow | Surface temperature | Energy budget | Earth | Trade | Energy | Moisture content | Hadley cells | Temperature effects | Surface properties | Coupling | Trade winds | Ocean currents | Wind-driven ocean circulation | Atmospheric circulation | Convergence zones | Turbulence | Ocean circulation | Cerebral hemispheres | Sea surface temperature | Fluxes | General circulation | Cells | Winds | Energy balance | Heating | Atmosphere | Water circulation | Energy transfer | Circulation | Surface energy | Equator | Anomalies
Journal Article
The American economic review, ISSN 0002-8282, 9/2017, Volume 107, Issue 9, pp. 2821 - 2854
Journal Article
Climate dynamics, ISSN 0930-7575, 6/2018, Volume 50, Issue 11, pp. 4061 - 4081
Land–ocean | Climatology | Atmospheric circulation | Earth Sciences | Trade-winds | Canary Islands | Wind speed | Geophysics/Geodesy | Oceanography | Trends | Inversion-layer | Meteorology & Atmospheric Sciences | Physical Sciences | Science & Technology | Winds | Speed | Usage | Climate models | Forecasts and trends | Models | Ocean-atmosphere interaction | Seasonal variability | Wind | Correlation | Variability | Oscillations | Inversion | Weather stations | Trade | Atlantic Oscillation | Islands | Trade winds | Atmospheric forcing | Complementarity | Oceans | North Atlantic Oscillation | Atmospheric circulation changes | Spring | Mountain weather | Wind speed trends | Ocean-atmosphere system | Boundary layers | Geovetenskap och miljövetenskap | Earth and Related Environmental Sciences
Journal Article
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Full Text
Triggering of El Niño onset through trade wind–induced charging of the equatorial Pacific
Geophysical research letters, ISSN 0094-8276, 03/2013, Volume 40, Issue 6, pp. 1212 - 1216
Numerical modeling | ENSO | Atmospheric forcing | Geosciences, Multidisciplinary | Physical Sciences | Geology | Science & Technology | Earth, ocean, space | Earth sciences | Exact sciences and technology | Wind | Ocean-atmosphere interaction | Ocean temperature | Meteorology | Charging | Equatorial regions | Oceans | El Nino | Enthalpy | Animated | Sea surface temperature | Trade winds
Journal Article