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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Energiteknik

    Introduction to Energy Systems

    AvIbrahim Dincer,Dogan Erdemir

    Inbunden, Engelska, 2023

    1 176 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Introduction to Energy Systems An in-depth introduction to applications and analysis of energy systems, covering both renewable and traditional types of energy systems In Introduction to Energy Systems, the content is uniquely designed to cover comprehensive descriptions and assessments of all the key types of energy sources, including fossil fuels-based, nuclear, and renewable energy systems, with a special focus on their design, analysis and assessment, technical and operational aspects, and applications. As a comprehensive resource, the work also introduces many topics not typically covered in other energy system textbooks, such as system design and assessment through exergy, environmental impact assessment of energy systems, and life cycle assessment. From a theory standpoint, the book provides context on the importance of energy and the issues related to energy we face in our world today, with close attention paid to key environmental and sustainability issues. Furthermore, the book includes illustrative examples and problems, and case studies. To aid in seamless reader comprehension, helpful questions and problems are included at the end of each chapter. Sample topics covered in Introduction to Energy Systems include: Fundamental concepts and thermodynamic principles, traditional and innovative systems, and detailed applications in renewable energy systems, including solar, wind, geothermal, biomass, hydro, and marine energiesDifferent types of fuels used in energy systems today, discussions of their combustion characteristics with a clear analysis of each one, and analyses and assessments through energy and exergy approachesIndustrial ecology and life cycle assessment, with the intention of clearly assessing the environmental impacts of energy systemsHow to write balance equations for mass, energy, entropy and exergy, calculate the required capacities, and find the energy and exergy efficiencies and/or energetic and exegetics coefficient of performance valuesIntroduction to Energy Systems serves as a valuable learning resource for both undergraduate and graduate students studying courses, such as Introduction to Energy Systems, Energy System Design, Renewable Energy, Energy & Sustainability, and Fundamentals of Renewable Energy.

    Produktinformation

    • Utgivningsdatum:2023-08-31
    • Mått:185 x 257 x 41 mm
    • Vikt:1 111 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:576
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119825760

    Utforska kategorier

    • Energiteknik inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Ibrahim Dincer is a Professor of Mechanical Engineering at the Ontario Tech. University in Oshawa, Ontario, Canada, where he teaches courses on Energy Systems, Heat Transfer, and Thermodynamics. He is a leading researcher in sustainable energy technologies, and his achievements have been recognized through numerous teachings, research, and service awards. Dogan Erdemir is a senior researcher at the Clean Energy Research Laboratory at Ontario Tech. University in Canada. He is an expert on renewable energy systems, hydrogen technologies from production to utilization, ammonia energy technologies, sustainable energy systems, and energy storage techniques.

    Innehållsförteckning

    • Preface xiNomenclature xiiiAbout the Companion Website xvii1 Energy and Environment Perspectives 11.1 Introduction 11.2 Importance of Energy 31.3 Energy Issues 41.4 Environmental Issues 51.5 Smart Solutions 81.6 3S Concept 101.7 Role of Engineering 111.8 Life Cycle Assessment 121.9 Industrial Ecology 171.10 Energy Labeling 181.11 Closing Remarks 222 Energy Sources and Sustainability 252.1 Introduction 252.2 Three Key Points 272.3 Five Major Economic Drivers 282.4 Historical Perspectives 292.5 Exponential Growth in Energy Dynamics 302.6 Energy Intensity 362.7 Dimensions of Sustainability 392.8 Sustainable Development 452.9 Closing Remarks 513 System Analysis 553.1 Introduction 553.2 Zeroth and Third Laws of Thermodynamics 583.3 First Law of Thermodynamics 593.4 Second Law of Thermodynamics 593.5 Six-Step in System Analysis 603.6 Closed Systems 613.7 Open Systems 683.8 Performance Assessment 773.9 Closing Remarks 824 Fuels and Combustion 854.1 Introduction 854.2 Fossil Fuels 874.3 Impacts of Fossil Fuels 924.4 Combustion of Fuels 964.5 Thermodynamic Analysis of Combustion 1034.6 Closing Remarks 1125 Nuclear Energy 1175.1 Introduction 1175.2 Historical Perspectives 1195.3 Types of Nuclear Energy 1215.4 Types of Nuclear Radiation and Potential Effects 1235.5 Nuclear Fuels and Production 1245.6 Types of Nuclear Reactors 1285.7 Nuclear Power Production 1335.8 Small Modular Reactors and Their Utilization 1425.9 Nuclear Cogeneration 1435.10 Nuclear Hydrogen Production 1475.11 Integrated Nuclear Energy Systems for Communities 1535.12 Closing Remarks 1606 Solar Energy 1656.1 Introduction 1656.2 Atmospheric and Direct Solar Radiation 1686.3 Solar Energy Applications 1766.4 Solar Thermal Systems 1796.5 Solar PV Systems 1946.6 Photovoltaic Thermal Hybrid Solar Panels (PVTs) 1986.7 Closing Remarks 2027 Wind Energy 2097.1 Introduction 2097.2 Historical Development of Wind Energy 2127.3 Wind Effect and Global Wind Patterns 2127.4 Wind Power 2147.5 Classification of Wind Turbines 2167.6 Horizontal-Axis Wind Turbines 2177.7 Vertical-Axis Wind Turbines 2277.8 Offshore and Onshore Types of Wind Energy 2307.9 Case Studies 2317.10 Energy and Exergy Maps for Wind Energy Systems 2377.11 Closing Remarks 2418 Geothermal Energy 2458.1 Introduction 2458.2 Geothermal Resources 2488.3 Advantages and Disadvantageous of Geothermal Energy Systems 2508.4 Geothermal Applications 2508.5 Geothermal Power Generation 2528.6 Geothermal Heat Pumps 2778.7 Geothermal District Heating 2818.8 Other Applications of Geothermal Energy 2838.9 Closing Remarks 2869 Biofuels and Biomass Energy 2939.1 Introduction 2939.2 CO2 Balance 2959.3 Biomass 2979.4 Combustion, Gasification and Pyrolysis 2989.5 Biofuels 3029.6 Biogas 3049.7 Waste to Energy Power Generation Systems 3059.8 Biodigestion and Biodigesters 3129.9 Micro-Gas Turbines 3179.10 Case Studies 3239.11 Closing Remarks 32810 Hydro and Ocean Energies 33510.1 Introduction 33510.2 Hydro Energy 33610.3 Classification of Hydropower Plants 34010.4 Analysis of Hydro Energy System 34610.5 Ocean Energy 35510.6 Closing Remarks 37111 Energy Storage 37711.1 Introduction 37711.2 Historical Development of Energy Storage Operations 38011.3 Energy Storage Methods 38011.4 Working Principles of Energy Storage Systems 38311.5 Analysis of Energy Storage Systems 38411.6 Mechanical Energy Storage Methods 38511.7 Thermal Energy Storage Methods 39411.8 Chemical Energy Storage Methods 40411.9 Electrochemical Energy Storage Systems 40711.10 Other Energy Storage Techniques 40911.11 Closing Remarks 41312 Hydrogen Energy 41712.1 Introduction 41712.2 Historical Development of Hydrogen Energy Systems 41912.3 Hydrogen Production 42112.4 Electrolysis 43512.5 Hydrogen Storage Methods 44112.6 Sectoral Hydrogen Utilization 44512.7 Closing Remarks 45613 Integrated Energy Systems 46113.1 Introduction 46113.2 System Integration 46313.3 Multigeneration 46413.4 Closing Remarks 50014 Life Cycle Assessment of Energy Systems 50514.1 Introduction 50514.2 Case Studies 50914.3 Closing Remarks 531References 531Questions/Problems 532Index 535