Planning and Operation of Multi-Carrier Energy Networks
Editors: Nazari-Heris, Morteza, Asadi, Somayeh, Mohammadi-Ivatloo, Behnam (Eds.)
Free Preview- Provides insight on the design and operation of multi-carrier energy systems
- Covers both theoretical aspects and technical applications
- Includes case studies to help apply concepts to real engineering situations
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- About this book
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This book discusses the optimal design and operation of multi-carrier energy systems, providing a comprehensive review of existing systems as well as proposing new models. Chapters cover the theoretical background and application examples of interconnecting energy technologies such as combined heat and power plants, natural gas-fired power plants, power to gas technology, hydropower plants, and water desalination systems, taking into account the operational and technical constraints of each interconnecting element and the network constraint of each energy system. This book will be a valuable reference for power network and mechanical system professionals and engineers, electrical power engineering researchers and developers, and professionals from affiliated power system planning communities.
- Provides insight on the design and operation of multi-carrier energy systems;
- Covers both theoretical aspects and technical applications;
- Includes case studies to help apply concepts to real engineering situations.
- About the authors
-
Morteza Nazari-Heris, PhD, is a Research Assistant in the Department of Architectural Engineering at The Pennsylvania State University. He obtained BSc, MSc, and PhD degrees in electrical engineering from University of Tabriz. His main areas of interest are micro grids, smart grids, integrated heat and power networks, and energy storage technologies.
Somayeh Asadi, PhD, is an Assistant Professor in the Department of Architectural Engineering at The Pennsylvania State University. Prior to that, she was an Assistant Professor at Texas A&M University. Dr. Asadi’s research interests focus on automated design, critical infrastructure systems, food-water-energy nexus, design of high-performance buildings, and environmental sustainability. She serves on the Editorial Board of the Journal of Advanced Materials Research and the Journal of Environmental Conservation Research, has obtained funding from diverse sources, including the Pennsylvania Department of Environmental Protection, the Department of Energy, the Qatar National Research Fund, and the National Science Foundation, and published more than 70 journal and conference papers.
Behnam Mohammadi-Ivatloo, PhD, is an Associate Professor at the University of Tabriz. Before joining the University of Tabriz, he was a research associate at Institute for Sustainable Energy, Environment and Economy at the University of Calgary. He obtained MSc and PhD degrees in electrical engineering from Sharif University of Technology. He is head of the Smart Energy Systems Lab at University of Tabriz. His mains research interests are renewable energies, micro grid systems, and smart grids.
- Table of contents (13 chapters)
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Introduction and Literature Review of Cost-Saving Characteristics of Multi-carrier Energy Networks
Pages 1-37
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Introduction and Literature Review of the Operation of Multi-carrier Energy Networks
Pages 39-57
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An Optimal Operation Model for Multi-carrier Energy Grids
Pages 59-85
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Energy Markets of Multi-carrier Energy Networks
Pages 87-119
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Optimal Operation of Multi-carrier Energy Networks Considering Demand Response Programs
Pages 121-141
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Table of contents (13 chapters)
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Bibliographic Information
- Bibliographic Information
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- Book Title
- Planning and Operation of Multi-Carrier Energy Networks
- Editors
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- Morteza Nazari-Heris
- Somayeh Asadi
- Behnam Mohammadi-Ivatloo
- Series Title
- Power Systems
- Copyright
- 2021
- Publisher
- Springer International Publishing
- Copyright Holder
- Springer Nature Switzerland AG
- eBook ISBN
- 978-3-030-60086-0
- DOI
- 10.1007/978-3-030-60086-0
- Hardcover ISBN
- 978-3-030-60085-3
- Series ISSN
- 1612-1287
- Edition Number
- 1
- Number of Pages
- VIII, 374
- Number of Illustrations
- 11 b/w illustrations, 130 illustrations in colour
- Topics