Scientists and policymakers worldwide recognise that continuing to use fossil fuels (coal, oil and gas) to produce useful energy with the inevitable emissions of CO2 and other greenhouse gasses is leading to changes in the world's climate with potentially catastrophic consequences. Both mitigation of the emissions of greenhouse gases as well as adaptation to the changing environment are urgently required to manage the worst effects of climate change. Limiting greenhouse gas emissions from thermal energy is a key part of the solution, with its own set of challenges and opportunities. Widespread use of technologies for transporting and storing thermal energy is needed. District heating and cooling networks are well established in some countries but are now being adopted much more widely. Low carbon thermal energy can be sourced from heat pumps, combined heat and power plants using renewable fuels, and from waste heat, increasingly from IT facilities. Technologies exist at various power levels and timescales. Energy storage materials range from water and concrete to phase change materials. Thermal Energy Networks and Storage discusses thermal energy networks and thermal energy storage as well as buildings that maintain comfortable temperatures with minimum energy requirements. Chapters systematically cover these topics, and then the necessary integration of thermal energy and electricity networks. This book has been written with an audience of research and development professionals, providers of thermal energy network components as well as academic researchers in mind. It will also be a valuable reference for undergraduate and postgraduate students with an interest in thermal energy.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Nick Jenkins is a professor at Cardiff University. Before moving to academia, his career included 14 years of industrial experience, of which 5 years were in developing countries. While at university, he has developed teaching and research activities in electrical power engineering, renewable energy and low-carbon energy systems. He is a Fellow of the Royal Academy of Engineering.
Carlos Ugalde is a professor at Cardiff University. He conducts research on the dynamic modelling and control of energy systems, including renewable energy sources, DC technologies and thermal stores. He is an associate editor of IET Energy Systems Integration and an editorial board member of Applied Energy.
Meysam Qadrdan is a professor at Cardiff University. His research looks into the optimal design and operation of integrated energy systems such as heat and electricity networks.
Ivan De la Cruz-Loredo is a research associate at Cardiff University. He focuses on thermal storage in multi-vector energy systems and their control and optimisation.
Muditha Abeysekera is a lecturer at Cardiff University. His research interests focus on the modelling, design and operation of smart local energy systems.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. Scientists and policymakers worldwide recognise that continuing to use fossil fuels (coal, oil and gas) to produce useful energy with the inevitable emissions of CO2 and other greenhouse gasses is leading to changes in the world's climate with potentially catastrophic consequences. Both mitigation of the emissions of greenhouse gases as well as adaptation to the changing environment are urgently required to manage the worst effects of climate change.Limiting greenhouse gas emissions from thermal energy is a key part of the solution, with its own set of challenges and opportunities. Widespread use of technologies for transporting and storing thermal energy is needed. District heating and cooling networks are well established in some countries but are now being adopted much more widely. Low carbon thermal energy can be sourced from heat pumps, combined heat and power plants using renewable fuels, and from waste heat, increasingly from IT facilities. Technologies exist at various power levels and timescales. Energy storage materials range from water and concrete to phase change materials.Thermal Energy Networks and Storage discusses thermal energy networks and thermal energy storage as well as buildings that maintain comfortable temperatures with minimum energy requirements. Chapters systematically cover these topics, and then the necessary integration of thermal energy and electricity networks.This book has been written with an audience of research and development professionals, providers of thermal energy network components as well as academic researchers in mind. It will also be a valuable reference for undergraduate and postgraduate students with an interest in thermal energy. Thermal energy from green sources is indispensable to combating climate change. This concise work covers thermal energy storage, networks, thermal performance buildings, and integration with electric power grids. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9781839538780
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