THERMAL ENERGY STORAGE Outlook

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THERMAL ENERGY STORAGE Outlook ( thermal-energy-storage-outlook )

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REFERENCES Abedin, A. H. And M. A. Rosen (2012), “Closed and open thermochemical energy storage: Energy- and exergy-based comparisons”, Energy, Vol. 41, Issue 1, pp. 83–92, doi: 10.1016/j.energy.2011.06.034. Aee inTeC (2019), World Map of Solar Thermal Projects, http://ship-plants.info/solar-thermal- plants-map (accessed 17 July 2019). Al-HAbAibeH, A., b. sHAkMAk And s. FAnsHAwe (2017), “The development of an experimental test rig to evaluate the performance of a new technology for stratified hot water storage – The Water Snake”, Energy Procedia, Vol. 142, Elsevier, pp. 3644–3653, doi: 10.1016/J.EGYPRO.2017.12.257. Ali, M., J. eksTRöM And M. leHTonen (2017), “Assessing the potential benefits and limits of electric storage heaters for wind curtailment mitigation: A Finnish case study”, Sustainability (Switzerland), Vol. 9, Issue 5, doi: 10.3390/su9050836. Alonso, M. C. et al. (2016), “Calcium aluminate based cement for concrete to be used as thermal energy storage in solar thermal electricity plants”, Cement and Concrete Research, Vol. 82, Elsevier, pp. 74–86, doi: 10.1016/j.cemconres.2015.12.013. Alovisio, A. et al. (2017), “Optimizing the CSP-calcium looping integration for thermochemical energy storage”, Energy Conversion and Management, Vol. 136, pp. 85–98, doi: 10.1016/j.enconman.2016.12.093. AlvA, G. et al. (2017), “Thermal energy storage materials and systems for solar energy applications”, Renewable and Sustainable Energy Reviews, Vol. 68, pp. 693–706, doi: 10.1016/j. rser.2016.10.021. AlvA, G., Y. lin And G. FAnG (2018), “An overview of thermal energy storage systems”, Energy, Vol. 144, Pergamon, pp. 341–378. ARAneR (2017), Thermal Energy Storage TES Tank Reference E-Book, ARANER, www.araner.com/ (accessed 26 February 2019). ARCHiMede solAR eneRGY (2020), Molten salts vs Oil, www.archimedesolarenergy.it/molten_salt_vs_oil. htm AsiAn developMenT bAnk (2017), District Cooling in the People’s Republic of China – Status and Development Potential, Asian Development Bank, www.adb.org/publications/ district-cooling-prc-status-development-potential. ATee (AssoCiATion TeCHnique ÉneRGie enviRonneMenT) (2016), “Étude de valorisation du stockage thermique et du power-to-heat”, https://atee.fr/ system/files/2020-01/20161114-Stockage- Rapport%20complet%20de%20 l%E2%80%99%C3%89tude%20PEPS3.pdf. AuRoRA eneRGY (2018), The E-Mobility Revolution: Impact of Electric Vehicles on the GB Power System and Emerging Utility Business Models. AxioM Cloud inC. (n.d.), Virtual Battery Case Study – Multi-site Grid Services Event, https://axiomcloud. docsend.com/view/dw695qyn8atvt6wn. AYdin, d., s. p. CAseY And s. RiFFAT (2015), “The latest advancements on thermochemical heat storage systems”, Renewable and Sustainable Energy Reviews, Vol. 41, pp. 356–367, doi: 10.1016/j. rser.2014.08.054. bAles, C. et al. (2007), Laboratory Prototypes of Thermo- Chemical and Sorption Storage Units, IEA. bAşeR, T., n. lu And J. s. MCCARTneY (2016), “Operational response of a soil-borehole thermal energy storage system”, Journal of Geotechnical and Geoenvironmental Engineering, Vol. 142, Issue 4, p. 4015097, doi: 10.1061/(ASCE) GT.1943-5606.0001432. beis (2016), Evidence Gathering: Thermal Energy Storage (TES) Technologies, UK Department for Business, Energy & Industrial Strategy. 120 INNOVATION OUTLOOK

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