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Progress in Sustainable Energy Technologies: Generating Renewable Energy

Editat de Ibrahim Dincer, Adnan Midilli, Haydar Kucuk
en Limba Engleză Paperback – 26 sep 2016
This multi-disciplinary volume presents information on the state-of-the-art in sustainable energy technologies key to tackling the world’s energy challenges and achieving environmentally benign solutions. Its unique amalgamation of the latest technical information, research findings and examples of successfully applied new developments in the area of sustainable energy will be of keen interest to engineers, students, practitioners, scientists and researchers working with sustainable energy technologies. Problem statements, projections, new concepts, models, experiments, measurements and simulations from not only engineering and science, but disciplines as diverse as ecology, education, economics and information technology are included, in order to create a truly holistic vision of the sustainable energy field. The contributions feature coverage of topics including solar and wind energy, biomass and biofuels, waste-to-energy, renewable fuels, geothermal and hydrogen power, efficiency gains in fossil fuels and energy storage technologies including batteries and fuel cells.
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Specificații

ISBN-13: 9783319361956
ISBN-10: 3319361953
Pagini: 767
Ilustrații: XXII, 745 p. 408 illus., 224 illus. in color.
Dimensiuni: 155 x 235 x 39 mm
Greutate: 1.06 kg
Ediția:Softcover reprint of the original 1st ed. 2014
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

Comparative Study of Effect of Cloudiness/Haziness Factor on the Quality of Solar Radiation.- Investigation of a Renewable Energy-Based Integrated System for Baseload Power Generation.- Investigation of Organic Rankine Cycle Performance with Variable Mixture Composition.- Comparative Performance Assessment of Two Geothermal-Based Integrated Systems for Hydrogen Production.- Exergetic Optimization of Two Renewable Energy Based Tri-Generation Systems Using Genetic Algorithm.- Performance Evaluation of Integrated Energy Systems.- Performance Assessment of a Two–Stage Heat Pump–Drying System.- Comparative Assessment of Nuclear Based Hybrid Sulfur Cycle and High Temperature Steam Electrolysis Systems Using HEEP.- Thermodynamic Analysis of a Cycle Integrating a Solid-Oxide Fuel Cell and Micro Gas Turbine with Biomass Gasification.- Exergy Analysis of Scroll-Based Rankine Cycles with Various Working Fluids.- Thermochemical Energy Storage Systems: Design, Assessment and Parametric Study of Effects of Charging Temperature.- Thermodynamic Assessment of Seasonal Stratified Thermal Storage.- Recent Developments in Solar-Powered Micro CHP Systems.- Evaluation of Transient Behavior of a Single-Effect Absorption Chiller.- Combined Effect of Global Warming and Buildings Envelope on the Performance of Ground Source Heat Pump Systems.- Concentrated Solar Power: A Vision for Rajasthan.- Dynamic Exergy Analysis of a Solar Ejector Refrigeration System with Hot Water Storage Tank.- Combined Photovoltaic Solar Cell – Fuel Cell System: Powering a Dormitory Building.- Investigation of a Combined Air Source Heat Pump and Solar Thermal Heating System within a Low Energy Research Home.- A Solar Water Heater for Subzero Temperature Areas.- Modeling of the Heliostat Field in Central Receiver Systems for a Given Input Power.- Single Pass Solar Air Heater without Absorber.- An Alternative Energy Concept: A Solar Power Plant with a Short Diffuser.- Production of Renewable Hydrogen by Aqueous-Phase Reforming of Glycerol over Ni-Cu Catalysts Derived from Hydrotalcite Precursors.- Effects of Pyrolysis Conditions on Structural Ingredients and Functional Groups of Hybrid Poplar.- Contribution for Solar Mapping in Algeria.- Experimental and Theoretical Investigations of Performance of Psychometric Humidification and Dehumidification Solar Water Desalination System Coupled with an Evacuated Tube Solar Collector.- Optimal Siting of Offshore Wind Farms.- An Investigation into a Small Wind Turbine Blade Design.- Hydrogen Production by Reforming Clathrate Hydrates Using the In-Liquid Plasma Method.- Facilitation of Wind Energy Conversion System Selection as Distributed Generation in Household/Commercial and Agricultural Sectors; Case Study of Iran.- An Integrated Monitoring Framework for Geothermal Space-Heating Systems in Residential Buildings, Fort McMurray.- Characterization of Heat Transport Processes in Geothermal Systems.- The Prospects for Geothermal Application in Algeria.- Thermal Interactions of Vertical Ground Heat Exchangers for Varying Seasonal Heat Flux.- Environmentally Friendly Systems: Earth Heat Pump System with Vertical Pipes for Heat Extraction for Domestic Heating and Cooling.- Thermal Response Test Analysis for an Energy Pile in Ground-Source Heat Pump Systems.- Thermal Performance Comparison between Longitudinal and Lateral Hollow Plate Fin Heat Sinks.- Model-Based Analysis of Singapore’s Energy System.- Analysis of a Combined Power and Heating Thermodynamic System Driven by Low Temperature Heat Source.- A Comparative Life Cycle Assessment (LCA) of Compressed Natural Gas (CNG) and Diesel Powered Refuse Collection Vehicles (RCVS).- Anaerobic Treatment and Biogas Production af Raw Leachate from Fresh Market Waste Composting by an Anaerobic Hybrid Reactor.- A First Experimental Survey on the Urban Heat Island in Padua (Italy).- Microwave Enhanced Pyrolysis of Gumwood.- Improving Operating Efficiency of Installed Capacity in a Power and Water Cogeneration Plant.- Simulation, Modeling and Analysis of Water/Power Ratios for a Dual Purpose Water and Power Production Plant.

Notă biografică

Ibrahim Dincer is Professor of Mechanical Engineering and Programs Director in the faculty of Engineering and Applied Science at University of Ontario Institute of Technology. He has authored and co-authored dozens of books, over 1000 refereed journal and conference papers and numerous technical reports. He has chaired many national and international conferences, symposia, workshops, and technical meetings. He is the founding chair/co -chair of various well-established international conferences, including the International Exergy, Energy and Environment Symposium. He has delivered over 300 keynote and invited lectures. He serves as Editor-In-Chief for International Journal of Energy Research, International Journal of Exergy, and International Journal of Global Warming, as well as associate editor, regional editor and editorial board member on various prestigious international journals.
Adnan Midilli is Professor of Mechanical Engineering and Dean of Engineering Faculty at Recep Tayyip Erdoğan University, Rize, Turkey. He is an active member of several international scientific organizations and societies and serves as editorial board member on prestigious international journals. He has chaired many national and international conferences, symposia, workshops and technical meetings. His research interest includes sustainable energy technologies, sustainable development, thermodynamic design and modeling.
Haydar Kucuk is Associate Professor of Mechanical Engineering and Associate Dean of Engineering Faculty at the Recep Tayyip Erdoğan University. He teaches graduate and undergraduate courses in thermodynamics, fluid mechanics and heat transfer. His research interests involve numerical heat transfer and fluid flow, drying and drying models, energy and exergy analysis, economic analysis and sustainability and thermodynamics. He serves as referee for international journals and was Technical Chair of The Sixth International Exergy, Energy and Environment Symposium.

Textul de pe ultima copertă

This multi-disciplinary volume presents information on the state-of-the-art in sustainable energy technologies key to tackling the world’s energy challenges and achieving environmentally benign solutions. Its unique amalgamation of the latest technical information, research findings, and examples of successfully applied new developments in the area of sustainable energy will be of keen interest to engineers, students, practitioners, scientists, and researchers working with sustainable energy technologies.  Problem statements, projections, new concepts, models, experiments, measurements, and simulations from not only engineering and science, but disciplines as diverse as ecology, education, economics, and information technology are included, in order to create a truly holistic vision of the sustainable energy field. The contributions feature coverage of topics including solar and wind energy, biomass and biofuels, waste-to-energy, renewable fuels, geothermal and hydrogen power, efficiency gains in fossil fuels and energy storage technologies such as batteries and fuel cells.

Caracteristici

Covers new technologies, strategic solutions and engineering applications related to the generation of sustainable energy
Brings readers up-to-date with the latest research findings from leading experts in sustainable energy from around the globe
Includes numerous applied examples from industry and case studies that put theory into practice
Includes supplementary material: sn.pub/extras