Advances in Underground Energy Storage for Renewable Energy Sources

Energy storage currently plays an important role in the electricity systems. Innovative energy storage solutions will play an important role in ensuring the integration of renewable energy sources into the electrical grids in the European Union. Pumped storage hydropower systems are the most mature...

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Year of Publication:2021
Language:English
Physical Description:1 electronic resource (183 p.)
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spelling Loredo, Jorge edt
Advances in Underground Energy Storage for Renewable Energy Sources
Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
1 electronic resource (183 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Energy storage currently plays an important role in the electricity systems. Innovative energy storage solutions will play an important role in ensuring the integration of renewable energy sources into the electrical grids in the European Union. Pumped storage hydropower systems are the most mature technology of energy storage and account for over 90% of installed energy storage capacity worldwide. However, PSH technology is constrained by topography and land availability in flat areas. In addition, PSH plants are controversial due to their impacts on landscape, land use and the environment. Conversely, underground energy storage systems may be an interesting alternative to increase the energy storage capacity with low environmental impacts. To help address and resolve these types of questions, this book is comprised of eleven chapters that explore new ways of energy storage reducing the environmental impacts caused by the installation of conventional energy storage systems, as well as to increase the energy storage capacity and promote the use of disused underground space, such as abandoned mines and quarries. The chapters included in this book cover a wide spectrum of issues related to underground energy storage systems. Advances in underground pumped storage hydropower, compressed air energy storage and hydrogen energy storage systems are presented. Finally, we would like to thank both the MDPI publishing and editorial staff for their excellent work and support, as well as the authors who collaborated with your interesting research works.
English
Research & information: general bicssc
Technology: general issues bicssc
energy storage
underground pumped storage
economic feasibility
ancillary services
day-ahead market
underground space
mining structures
underground reservoir
empirical analysis
numerical modelling
hydropower plants
hydrogen
underground storage
leakage
monitoring
protocol
helium
aquifer
renewable energy
hydropower
mine
groundwater
environmental impacts
efficiency
wind energy
photovoltaics
wind curtailment
mesoscale atmospheric model
hydro-pumped storage
abandoned mines
underground reservoirs
CAES
analytical modelling
sealing layer
environmental impact
hydrogen storage
sealing liners
Liner Rock Caverns
epoxy resin
hydrogen permeability
exergy
salt caverns
pumped storage hydropower
energy storage system
quarry
open pit
hydrochemistry
3-0365-1880-0
3-0365-1879-7
Menéndez, Javier edt
Loredo, Jorge oth
Menéndez, Javier oth
language English
format eBook
author2 Menéndez, Javier
Loredo, Jorge
Menéndez, Javier
author_facet Menéndez, Javier
Loredo, Jorge
Menéndez, Javier
author2_variant j l jl
j m jm
author2_role HerausgeberIn
Sonstige
Sonstige
title Advances in Underground Energy Storage for Renewable Energy Sources
spellingShingle Advances in Underground Energy Storage for Renewable Energy Sources
title_full Advances in Underground Energy Storage for Renewable Energy Sources
title_fullStr Advances in Underground Energy Storage for Renewable Energy Sources
title_full_unstemmed Advances in Underground Energy Storage for Renewable Energy Sources
title_auth Advances in Underground Energy Storage for Renewable Energy Sources
title_new Advances in Underground Energy Storage for Renewable Energy Sources
title_sort advances in underground energy storage for renewable energy sources
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2021
physical 1 electronic resource (183 p.)
isbn 3-0365-1880-0
3-0365-1879-7
illustrated Not Illustrated
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AT menendezjavier advancesinundergroundenergystorageforrenewableenergysources
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