Book description
This revised third edition of Power Generation Technologies explores even more renewable technologies in detail, from traditional fossil fuels and the more established alternatives such as wind and solar power, to emerging renewables such as biomass and geothermal energy. The book also features new expanded chapters on tidal project proposals, tidal bunds, enhanced geothermal technology, fast-moving areas in marine energy and the development of floating wind turbines.Power Generation Technologies is more than just an account of the technologies – for each method the author explores the economic and environmental costs and risk factors. Each technology is covered using the same basic criteria, so that comparisons between technologies can be made more easily. Those who are involved in planning and delivering energy, including engineers, managers and policy makers, will find a guide through the minefield of maintaining a reliable power supply, meeting targets on greenhouse gas emissions, and addressing economic and social objectives in this book.
- Explains in hundreds of diagrams how each technology functions in practice
- Evaluates the economic and environmental viability of each power generation system covered
- Features fast-advancing renewable and alternative power sources, such as municipal waste and solar options
- Applies a fresh focus on the evolution of traditional technologies such as natural gas and ‘clean coal’
Table of contents
- Cover image
- Title page
- Table of Contents
- Copyright
- Chapter 1. An Introduction to Electricity Generation
-
Chapter 2. Electricity Generation and the Environment
- Abstract
- The Evolution of Environmental Awareness
- Power Generation: The Broader Environmental Impact
- The Carbon Cycle and Atmospheric Warming
- Greenhouse Gas Emissions and Power Generation
- Controlling Carbon Dioxide
- The Hydrogen Economy
- The Economics of Electricity Production
- Externalities
- Life Cycle Assessment
- The Bottom Line
-
Chapter 3. Coal-Fired Power Plants
- Abstract
- Types of Coal
- Coal Reserves
- Coal Cleaning and Processing
- Traditional Coal-Fired Power Generation Technology
- Boiler Technology
- Steam Turbine Design
- Generators
- Fluidised Bed Combustion
- Integrated Gasification Combined Cycle
- Emission Control for Coal-Fired Power Plants
- Coal Treatment
- Low NOx Combustion Strategies
- Sulphur Dioxide Removal
- NOx Capture
- Combined Sulphur and Nitrogen Oxide Removal
- Particulate (Dust) Removal
- Mercury Removal
- Carbon Dioxide
- Biomass Cofiring
- Postcombustion Capture
- Oxyfuel Combustion
- Coal Gasification
- Carbon Dioxide Sequestration
- The Cost of Coal-Fired Power Generation
-
Chapter 4. Natural Gas–Fired Gas Turbine and Combined Cycle Power Plants
- Abstract
- Natural Gas
- The Growth of Gas Turbine Technology
- The Gas Turbine Principle
- Modern Gas Turbine Design for Power Generation
- Gas Turbine Development
- Advanced Gas Turbine Cycles
- Reheating
- Intercooling
- Recuperation
- Mass Injection
- Combined Cycle Power Plants
- Microturbines
- Emission Control for Gas Turbine Power Plants
- The Cost of Gas Turbine–Based Power Generation
-
Chapter 5. Piston Engine–Based Power Plants
- Abstract
- The History of the Reciprocating Engine
- Engine Fuel
- Internal Combustion Engine Technology
- Engine Cycles
- Engine Size and Engine Speed
- Spark-Ignition Engines
- Diesel Engines (Compression Engines)
- Dual Fuel Engines
- Stirling Engines
- Cogeneration
- Combined Cycle
- Emission Control
- Nitrogen Oxide Emissions
- Carbon Monoxide, Volatile Organic Compounds and Particulates
- Sulphur Dioxide
- Carbon Dioxide
- The Cost of Reciprocating Engine-Based Power Generation
-
Chapter 6. Combined Heat and Power
- Abstract
- The Historical Background to Combined Heat and Power Usage
- Global Combined Heat and Power Capacity
- Global Combined Heat and Power Potential
- Combined Heat and Power Principles and Applications
- Combined Heat and Power Technology
- Piston Engines
- Steam Turbines
- Gas Turbines
- Microturbines
- Fuel Cells
- Nuclear Power
- The Cost of Combined Heat and Power
-
Chapter 7. Fuel Cells
- Abstract
- The History of Fuel Cells
- Global Fuel Cell Capacity
- The Fuel Cell Principle
- Catalysts
- Hydrocarbon Gas Reformation
- Fuel Cell Efficiency
- Fuel Cell Types
- The Alkaline Fuel Cell
- The Phosphoric Acid Fuel Cell
- The Proton Exchange Membrane Fuel Cell
- The Molten Carbonate Fuel Cell
- The Solid Oxide Fuel Cell
- The Direct Methanol Fuel Cell
- Fuel Cell Costs
-
Chapter 8. Hydropower
- Abstract
- Global Hydropower Capacity and Production
- The Hydropower Resource
- Hydropower Sites
- Categories of Hydropower Plants
- Large Hydropower Plants: Dams and Barrages
- Run-of-River Project
- Dam and Reservoir Projects
- Dam Types
- Hydropower Turbines
- Impulse Turbines
- Reaction Turbines
- Francis Turbine
- Propeller and Kaplan Turbines
- Deriaz Turbine
- Generators
- Small Hydropower
- Environmental Considerations
- Environmental Assessment
- Resettlement
- Biodiversity
- Geological Effects
- Sedimentation and Downstream Effects
- Greenhouse Gases
- Interregional Effects
- Hydropower and Intermittent Renewable Generation
- The Cost of Electricity Generation From Hydropower Plants
-
Chapter 9. Tidal Barrage Power Plants
- Abstract
- The Tidal Resource
- Operating Tidal Barrage Power Plants
- Tidal Power Plant Design
- Two-Basin Projects
- Tidal Lagoons
- Tidal Barrage Construction Techniques
- Turbines
- Turbine Speed Regulation
- Sluices and Ship Locks
- Environmental Considerations
- The Cost of Electricity Generation From Tidal Barrage Power Plants
- Chapter 10. Power System Energy Storage Technologies
- Chapter 11. Wind Power
-
Chapter 12. Geothermal Power
- Abstract
- Global Geothermal Capacity
- The Geothermal Resource
- Geothermal Fields
- Brine-Methane Reservoirs
- Hot Dry Rock
- Exploiting the Magma
- Location of Geothermal Resources
- The Size of the Resource
- Geothermal Energy Conversion Technologies
- Direct Steam Power Plants
- Flash Steam Plants
- Binary Cycle Power Plants
- Advanced Geothermal Technologies
- Geothermal Power and District Heating
- Finding and Exploiting Geothermal Sources
- The Cost of Geothermal Power
-
Chapter 13. Solar Power
- Abstract
- Global Solar Power Generating Capacity
- The Solar Energy Resource
- Solar Sites and Land Resources
- Solar Power Generation Technologies
- Solar Thermal Power Generation
- Parabolic Troughs
- Solar Towers
- Solar Dishes
- Fresnel Reflectors
- Other Solar Thermal Technologies
- Photovoltaic Devices
- Solar Photovoltaic Technology
- Types of Solar Cells
- Cell Structures
- Concentrating Solar Cells
- Third-Generation Solar Cells
- Modules, Inverters and Panels
- System Types
- Solar Photovoltaic Generation and Energy Storage
- The Cost of Solar Power
- Solar Thermal Costs
- Solar Photovoltaic Costs
-
Chapter 14. Marine Power Generation Technologies
- Abstract
- The Marine Energy Resource
- Ocean Thermal Energy Conversion
- OTEC Technology
- Wave Power
- Wave Power Technology
- Shore and Nearshore Wave Converters
- Offshore Devices
- Marine Current Energy
- Marine Current Energy Converters
- Horizontal Axis Turbines
- Vertical Axis Turbines
- Water Wheels and Cross-Flow Turbines
- Other Marine Current Devices
- Marine Current Projects
- Salinity Gradient Power Generation
- Osmotic Power
- Vapour Compression
- Hydrocratic Power
- Reverse Electrodialysis
- The Cost of Marine Power Generation
-
Chapter 15. Biomass-Based Power Generation
- Abstract
- Global Biomass Electricity Production
- Types of Biomass
- Biomass Wastes
- Fuelwood
- Energy Crops
- Biomass Trade
- Biomass Energy Conversion Technology
- Direct Firing
- Co-firing
- Biomass Gasification
- Fuel Handling
- Biomass Digesters
- Liquid Fuels
- The Cost of Biomass Power Generation
- Technology Costs
- Fuel Costs
- The Cost of Electricity From Biomass
-
Chapter 16. Power From Waste
- Abstract
- Landfill Waste Disposal
- Global Production of Power From Waste
- The Politics of Waste
- Waste Management Hierarchy
- Sources of Waste
- Waste Composition
- Waste Collection and Recycling
- Waste Power Generation Technologies
- Traditional Waste Incineration Plants
- Gasification and Pyrolysis
- Refuse-Derived Fuel
- Environmental Issues and Waste Plant Emissions
- Waste Plant Emissions
- Ash
- Fly Ash and Flue Gas Treatment Residues
- Flue Gas
- Dioxins
- Heavy Metals
- The Cost of Energy From Waste Plants
-
Chapter 17. Nuclear Power
- Abstract
- Global Capacity and Electricity Production From Nuclear Power
- Fundamentals of Nuclear Power
- Nuclear Fission
- Controlled Nuclear Reaction
- Fusion
- Nuclear Fission Reactor Designs
- Boiling Water Reactor
- Pressurised Water Reactor
- The Pressurised Heavy Water Reactor (CANDU Reactor)
- Gas-Cooled Reactors
- RBMK Reactor
- High-Temperature Gas-Cooled Reactor
- Nuclear Fast (Breeder) Reactors
- Advanced Reactors
- Small Modular Reactors
- Nuclear Fusion
- Magnetic Confinement
- Inertial Confinement
- Tritium Production
- The Environmental Question
- Radioactive Waste
- Waste Categories
- Decommissioning
- The Cost of Nuclear Power
- Index
Product information
- Title: Power Generation Technologies, 3rd Edition
- Author(s):
- Release date: February 2019
- Publisher(s): Newnes
- ISBN: 9780128182550
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