Renewable Energy, ISSN 0960-1481, 2012, Volume 37, Issue 1, pp. 1 - 8
Wind power generation differs from conventional thermal generation due to the stochastic nature of wind. Thus wind power forecasting plays a key role in...
Probabilistic forecasting | Wind integration wind power forecasting | Numerical weather prediction | Meteorology | ENERGY | ENERGY & FUELS | TERRAIN | ALGORITHMS | SPEED PREDICTION | MODELS | INTEGRATION | FRAMEWORK | SHORT-TERM PREDICTION | SPATIAL CORRELATION | VERIFICATION | Hydroelectric power plants | Analysis | Green technology | Electric power production | Wind power | Mechanical engineering | Energy management systems | Methods | Aerospace engineering | Ramps | Electric power generation | Uncertainty | Wind power generation | Markets | Forecasting | Power plants
Probabilistic forecasting | Wind integration wind power forecasting | Numerical weather prediction | Meteorology | ENERGY | ENERGY & FUELS | TERRAIN | ALGORITHMS | SPEED PREDICTION | MODELS | INTEGRATION | FRAMEWORK | SHORT-TERM PREDICTION | SPATIAL CORRELATION | VERIFICATION | Hydroelectric power plants | Analysis | Green technology | Electric power production | Wind power | Mechanical engineering | Energy management systems | Methods | Aerospace engineering | Ramps | Electric power generation | Uncertainty | Wind power generation | Markets | Forecasting | Power plants
Journal Article
Nature, ISSN 0028-0836, 08/2012, Volume 488, Issue 7411, pp. 313 - 319
Water has always been crucial to combustion and hydroelectric processes, but it could become the source of power in membrane-based systems that capture energy...
OSMOTIC POWER | PRESSURE-RETARDED OSMOSIS | REVERSE-ELECTRODIALYSIS | AMMONIA-CARBON DIOXIDE | ELECTRODIALYSIS ELECTROLYSIS CELLS | MULTIDISCIPLINARY SCIENCES | BIOELECTROCHEMICAL SYSTEMS | SALINITY GRADIENTS | HYDROGEN-PRODUCTION | ENERGY EFFICIENCY | MICROBIAL FUEL-CELLS | Water | Electricity | Dialysis - methods | Biomass | Hot Temperature | Biofuels | Renewable Energy - economics | Salinity | Sewage | Purification | Research | Electric power production | Fuel cells | Electrical currents | Efficiency | Desalination | Technological change | Power plants | Energy from waste | Microorganisms | Energy use | Osmosis | Combustion | Sea water | Waste water
OSMOTIC POWER | PRESSURE-RETARDED OSMOSIS | REVERSE-ELECTRODIALYSIS | AMMONIA-CARBON DIOXIDE | ELECTRODIALYSIS ELECTROLYSIS CELLS | MULTIDISCIPLINARY SCIENCES | BIOELECTROCHEMICAL SYSTEMS | SALINITY GRADIENTS | HYDROGEN-PRODUCTION | ENERGY EFFICIENCY | MICROBIAL FUEL-CELLS | Water | Electricity | Dialysis - methods | Biomass | Hot Temperature | Biofuels | Renewable Energy - economics | Salinity | Sewage | Purification | Research | Electric power production | Fuel cells | Electrical currents | Efficiency | Desalination | Technological change | Power plants | Energy from waste | Microorganisms | Energy use | Osmosis | Combustion | Sea water | Waste water
Journal Article
1999, Issues in environmental science and technology, ISBN 9780854042500, Volume 11, xiii, 135
The wide-ranging subjects addressed in this book will contribute to the public understanding of science in this important area..
Environmental aspects | Electric power production | Environmental impact analysis | Energy industries | Electric power distribution
Environmental aspects | Electric power production | Environmental impact analysis | Energy industries | Electric power distribution
Book
IEEE Transactions on Power Systems, ISSN 0885-8950, 05/2006, Volume 21, Issue 2, pp. 965 - 972
This paper describes very short-term wind prediction for power generation, utilizing a case study from Tasmania, Australia. Windpower presently is the fastest...
Oceans | Hydroelectric power generation | windpower | intelligent systems | Adaptive neuro-fuzzy inference systems (ANFIS) | Wind forecasting | Wind energy generation | Power transmission lines | Production | Wind power generation | Frequency | Australia | very short-term forecasting | Power generation | Windpower | Intelligent systems | Very short-term forecasting | SPEED | ENERGY | adaptive neuro-fuzzy inference systems (ANFIS) | SPATIAL CORRELATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Fuzzy logic | Technology application | Usage | Forecasts and trends | Fuzzy algorithms | Electric power production | Wind power | Fuzzy systems
Oceans | Hydroelectric power generation | windpower | intelligent systems | Adaptive neuro-fuzzy inference systems (ANFIS) | Wind forecasting | Wind energy generation | Power transmission lines | Production | Wind power generation | Frequency | Australia | very short-term forecasting | Power generation | Windpower | Intelligent systems | Very short-term forecasting | SPEED | ENERGY | adaptive neuro-fuzzy inference systems (ANFIS) | SPATIAL CORRELATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Fuzzy logic | Technology application | Usage | Forecasts and trends | Fuzzy algorithms | Electric power production | Wind power | Fuzzy systems
Journal Article
Applied Energy, ISSN 0306-2619, 01/2018, Volume 210, pp. 568 - 579
Water-energy nexus refers to the interdependence between water resources and energy conversion, and it encompasses the multiple phases of electric power...
Water policy | Wet tower cooling | Drought | Water-energy nexus | Once-trough cooling | Power generation | RESOURCES | SCENARIOS | DISPATCH | ENERGY & FUELS | VULNERABILITY | FUTURE | CHALLENGES | ENGINEERING, CHEMICAL | PLANTS | IMPACTS | CLIMATE | Hydroelectric power plants | Water | Droughts | Analysis | Energy policy | Aquatic resources | Electric power production | Hydraulic measurements | Management | Electric power systems
Water policy | Wet tower cooling | Drought | Water-energy nexus | Once-trough cooling | Power generation | RESOURCES | SCENARIOS | DISPATCH | ENERGY & FUELS | VULNERABILITY | FUTURE | CHALLENGES | ENGINEERING, CHEMICAL | PLANTS | IMPACTS | CLIMATE | Hydroelectric power plants | Water | Droughts | Analysis | Energy policy | Aquatic resources | Electric power production | Hydraulic measurements | Management | Electric power systems
Journal Article
Energy, ISSN 0360-5442, 11/2013, Volume 61, pp. 354 - 367
Access to clean and stable electricity is essential in actualizing Nigeria's quest for joining the league of twenty most industrious nations by the year 2020...
Vision 20:2020 | Energy crisis | Environmental ramifications | Power sector reform | Nigeria | Power generation | INDUSTRIAL SOURCE APPLICATIONS | ENERGY | ENERGY & FUELS | AERMOD | FUTURE | DISPERSION MODEL | THERMODYNAMICS | NUCLEAR-POWER | Hydroelectric power plants | Nuclear energy | Nuclear power plants | Electric power production | Capacity | Analysis | Reserves | Alternative energy sources | Computer simulation | Electricity | Crude oil | Nuclear power generation | Energy (nuclear) | Land use
Vision 20:2020 | Energy crisis | Environmental ramifications | Power sector reform | Nigeria | Power generation | INDUSTRIAL SOURCE APPLICATIONS | ENERGY | ENERGY & FUELS | AERMOD | FUTURE | DISPERSION MODEL | THERMODYNAMICS | NUCLEAR-POWER | Hydroelectric power plants | Nuclear energy | Nuclear power plants | Electric power production | Capacity | Analysis | Reserves | Alternative energy sources | Computer simulation | Electricity | Crude oil | Nuclear power generation | Energy (nuclear) | Land use
Journal Article
1979, Energy in the American economy., ISBN 9780405119873, v, 78
Book
Journal of Cleaner Production, ISSN 0959-6526, 01/2017, Volume 141, pp. 370 - 384
Global power plant capacity has experienced a historical evolution, showing noticeable patterns over the years: continuous growth to meet increasing demand,...
Technical lifetime | Stranded assets | Power system evolution | Sustainability indicator | Power generation mix | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | ENVIRONMENTAL SCIENCES | TECHNOLOGIES | ENGINEERING, ENVIRONMENTAL | GAS | ELECTRICITY | Hydroelectric power plants | Global temperature changes | Alternative energy sources | Investments | Coal-fired power plants | Air pollution | Electric power production | Electric power systems | Sustainable development | Greenhouse gases | Fossil fuels | Energy minerals
Technical lifetime | Stranded assets | Power system evolution | Sustainability indicator | Power generation mix | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | ENVIRONMENTAL SCIENCES | TECHNOLOGIES | ENGINEERING, ENVIRONMENTAL | GAS | ELECTRICITY | Hydroelectric power plants | Global temperature changes | Alternative energy sources | Investments | Coal-fired power plants | Air pollution | Electric power production | Electric power systems | Sustainable development | Greenhouse gases | Fossil fuels | Energy minerals
Journal Article
2009, ISBN 9788215014760, 283
Book
Electric Power Systems Research, ISSN 0378-7796, 06/2017, Volume 147, p. 154
Accurate decisions regarding exposure to and hedging against market risk, both of which are crucial for electricity producers and consumers, depend on a...
Studies | Asymmetry | Volatility | Electricity consumption | Electricity pricing | Hedging | Electricity distribution | Markets | Risk | Econometrics | Hydroelectric plants | Extreme values
Studies | Asymmetry | Volatility | Electricity consumption | Electricity pricing | Hedging | Electricity distribution | Markets | Risk | Econometrics | Hydroelectric plants | Extreme values
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 2017, Volume 136, pp. 161 - 172
The high variability of solar energy makes utility-scale photovoltaic power generation confront huge challenges to penetrate into power system. In this paper,...
Optimal capacity | Photovoltaic integration | Complementary hydro-photovoltaic operation | Water resources allocation | Complementary hydro-photovoltaic | FEASIBILITY | ENERGY & FUELS | ALGORITHM | PREDICTION | HYBRID SYSTEM | MECHANICS | THERMODYNAMICS | OPTIMIZATION | operation | Case studies | Water-power | Electric power production | Solar energy industry | Hydroelectric power plants | Photovoltaic power generation | Solar power plants | Solar energy | Aquatic resources | Electric power systems
Optimal capacity | Photovoltaic integration | Complementary hydro-photovoltaic operation | Water resources allocation | Complementary hydro-photovoltaic | FEASIBILITY | ENERGY & FUELS | ALGORITHM | PREDICTION | HYBRID SYSTEM | MECHANICS | THERMODYNAMICS | OPTIMIZATION | operation | Case studies | Water-power | Electric power production | Solar energy industry | Hydroelectric power plants | Photovoltaic power generation | Solar power plants | Solar energy | Aquatic resources | Electric power systems
Journal Article
1987, Sommaire du changement climatique, ISBN 0662554906, Volume SCC 87-03., 20, 21
Summary of Great Lakes Institute, University of Windsor, reports: Phase I - Socio-economic assessment of the implications of climatic change for future water...
Canada | USA | navigation | water resources | electric power sources | hydroelectric power | freshwater | North America | climatic changes | Great Lakes
Canada | USA | navigation | water resources | electric power sources | hydroelectric power | freshwater | North America | climatic changes | Great Lakes
Book
13.
Review of literature related to the downstream ecological effects of hydroelectric power generation
2000, 2334., Volume 2334., v, 55
Instream, flow methodologies (e.g. historic flow, hydraulic, and habitat-based methods) in use in North America, New Zealand and Europe are summarized....
habitat | literature reviews | aquatic environment | community composition | hydroelectric power stations | environmental impact assessment | stream flow
habitat | literature reviews | aquatic environment | community composition | hydroelectric power stations | environmental impact assessment | stream flow
Book
Applied Energy, ISSN 0306-2619, 10/2017, Volume 204, pp. 432 - 445
The variability of photovoltaic (PV) power challenges its integration into power grids at the utility-scale. Operating PV power complementarily with hydropower...
Utility-scale power generation | Hydro–PV plant | Nesting model | Water level variation | Renewables | SYSTEM | ENERGY | FEASIBILITY | ENERGY & FUELS | CHINA | WIND POWER | ENGINEERING, CHEMICAL | POLICY | Hydro-PV plant | OPTIMIZATION | SOLAR PV POWER | Case studies | Hydroelectric power plants | Solar energy industry | Analysis | Reservoirs | Water-power | Electric power production | Aquatic resources | Cost benefit analysis
Utility-scale power generation | Hydro–PV plant | Nesting model | Water level variation | Renewables | SYSTEM | ENERGY | FEASIBILITY | ENERGY & FUELS | CHINA | WIND POWER | ENGINEERING, CHEMICAL | POLICY | Hydro-PV plant | OPTIMIZATION | SOLAR PV POWER | Case studies | Hydroelectric power plants | Solar energy industry | Analysis | Reservoirs | Water-power | Electric power production | Aquatic resources | Cost benefit analysis
Journal Article
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 12/2013, Volume 28, pp. 726 - 737
This paper presents the application of Mixed-Integer Programming (MIP) approach for solving the security-constrained daily hydrothermal generation Scheduling...
Wind hydrothermal scheduling | ARIMA processes | Load uncertainty | Security-constrained unit commitment (SCUC) | Stochastic programming | ECONOMIC-DISPATCH | ENERGY | TIME-SERIES MODELS | ENERGY & FUELS | STOCHASTIC UNIT COMMITMENT | SPEED | GENETIC ALGORITHM SOLUTION | ELECTRICITY MARKET | SYSTEMS | Case studies | Hydroelectric power plants | Electrical engineering | Safety and security measures | Analysis | Green technology | Electric power production | Wind power | Reserves | Economics | Schedules | Buses (vehicles) | Wind power generation | Markets | Activation | Scheduling
Wind hydrothermal scheduling | ARIMA processes | Load uncertainty | Security-constrained unit commitment (SCUC) | Stochastic programming | ECONOMIC-DISPATCH | ENERGY | TIME-SERIES MODELS | ENERGY & FUELS | STOCHASTIC UNIT COMMITMENT | SPEED | GENETIC ALGORITHM SOLUTION | ELECTRICITY MARKET | SYSTEMS | Case studies | Hydroelectric power plants | Electrical engineering | Safety and security measures | Analysis | Green technology | Electric power production | Wind power | Reserves | Economics | Schedules | Buses (vehicles) | Wind power generation | Markets | Activation | Scheduling
Journal Article
IEEE Transactions on Industry Applications, ISSN 0093-9994, 05/2019, Volume 55, Issue 3, pp. 2368 - 2377
This paper presents a day-ahead coordinated scheduling method of hydro and wind power generation systems (HWPGSs) with consideration of uncertainties. In this...
Job shop scheduling | wind power | interval analysis | Hydroelectric power generation | Coordinated scheduling | hydropower | Wind power generation | Wind farms | Power grids | Generators | uncertainty | Load flow | STORAGE | ENERGY | MODEL | ENGINEERING, ELECTRICAL & ELECTRONIC | ENGINEERING, MULTIDISCIPLINARY | INTEGRATION | OPERATION | PLANTS | OPTIMIZATION | Community policing | Crime prevention | Uncertainty | Computer simulation | Power flow | Wind effects | Scheduling | Wind power | Inflow
Job shop scheduling | wind power | interval analysis | Hydroelectric power generation | Coordinated scheduling | hydropower | Wind power generation | Wind farms | Power grids | Generators | uncertainty | Load flow | STORAGE | ENERGY | MODEL | ENGINEERING, ELECTRICAL & ELECTRONIC | ENGINEERING, MULTIDISCIPLINARY | INTEGRATION | OPERATION | PLANTS | OPTIMIZATION | Community policing | Crime prevention | Uncertainty | Computer simulation | Power flow | Wind effects | Scheduling | Wind power | Inflow
Journal Article
ELECTRIC POWER SYSTEMS RESEARCH, ISSN 0378-7796, 11/2019, Volume 176, p. 105962
The increasing accommodation of intermittent renewable energies into power grids creates needs for additional flexibility in power generation. In the field of...
Pump-as-turbine | PAT DESIGN | PLANT | WORKING | ENERGY | Stability | Hydroelectric power generation | PERFORMANCE | HYDROPOWER | MODEL | ENGINEERING, ELECTRICAL & ELECTRONIC | Hydraulic turbines | Power generation control | Variable-speed drives | Systems stability | Induction motors | Computer simulation | Electromagnetic induction | Electricity distribution | Control systems | Electromagnetics | Hydroelectric power | Pump turbines | Power converters | Electric power generation | Pumps | Power control | Control stability | Turbines
Pump-as-turbine | PAT DESIGN | PLANT | WORKING | ENERGY | Stability | Hydroelectric power generation | PERFORMANCE | HYDROPOWER | MODEL | ENGINEERING, ELECTRICAL & ELECTRONIC | Hydraulic turbines | Power generation control | Variable-speed drives | Systems stability | Induction motors | Computer simulation | Electromagnetic induction | Electricity distribution | Control systems | Electromagnetics | Hydroelectric power | Pump turbines | Power converters | Electric power generation | Pumps | Power control | Control stability | Turbines
Journal Article
IEEE Transactions on Power Systems, ISSN 0885-8950, 09/2017, Volume 32, Issue 5, pp. 3381 - 3390
This paper presents a unit commitment algorithm that defines each unit discharge given the water head, the total plant downstream flow, the variable discharge...
hydro generation scheduling | Upper bound | Short-term planning | unit commitment | cascaded reservoirs | mixed-integer linear programming | Reservoirs | Discharges (electric) | Planning | Delays | Indexes | HEAD | HYDROELECTRIC PLANT | CONSTRAINTS | SYSTEMS | HYDROTHERMAL DISPATCH | ENGINEERING, ELECTRICAL & ELECTRONIC | Control | Models | Electric power production | Electric power plants | Preprocessing | Unit commitment | Decisions | Linear programming | Scheduling | Discharge | Hydroelectric plants | Integer programming | Electric power generation | Algorithms | Mathematical models | Operating zones | Energy conversion efficiency
hydro generation scheduling | Upper bound | Short-term planning | unit commitment | cascaded reservoirs | mixed-integer linear programming | Reservoirs | Discharges (electric) | Planning | Delays | Indexes | HEAD | HYDROELECTRIC PLANT | CONSTRAINTS | SYSTEMS | HYDROTHERMAL DISPATCH | ENGINEERING, ELECTRICAL & ELECTRONIC | Control | Models | Electric power production | Electric power plants | Preprocessing | Unit commitment | Decisions | Linear programming | Scheduling | Discharge | Hydroelectric plants | Integer programming | Electric power generation | Algorithms | Mathematical models | Operating zones | Energy conversion efficiency
Journal Article
International Journal of Electrical Power and Energy Systems, ISSN 0142-0615, 12/2019, Volume 113, pp. 539 - 548
This paper assesses some important economic issues that arise with increased wind power penetration in hydrothermal systems. It is shown that it may become...
Wind power generation | Hydro pumped-storage plants | Hydrothermal scheduling | Mixed-integer linear programming | Unit commitment | PUMPED-STORAGE | ENERGY-STORAGE | ENGINEERING, ELECTRICAL & ELECTRONIC | Hydroelectric power plants | Analysis | Green technology | Testing equipment | Hydrothermal systems (Geology) | Electric power production | Wind power | Power lines
Wind power generation | Hydro pumped-storage plants | Hydrothermal scheduling | Mixed-integer linear programming | Unit commitment | PUMPED-STORAGE | ENERGY-STORAGE | ENGINEERING, ELECTRICAL & ELECTRONIC | Hydroelectric power plants | Analysis | Green technology | Testing equipment | Hydrothermal systems (Geology) | Electric power production | Wind power | Power lines
Journal Article