Thermal Energy Storage (TES) Technologies

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Thermal Energy Storage (TES) Technologies ( thermal-energy-storage-tes-technologies )

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Evidence Gathering: Thermal Energy Storage (TES) Technologies Key research gaps Throughout the course of this project, a number of gaps in the available knowledge and level of research were identified. Five key themes were identified and these can broadly be summarised as follows:  Commercialisation challenges  Uncertainty around future cost reduction  Uncertainty around performance of TES technologies  Lack of interseasonal heat storage knowledge in the UK  Uncertainty around carbon savings and benefits o Evaluating whether TES increases carbon emissions, because all storage systems have losses o Better understanding the degree to which TES can support electricity sector decarbonisation The following areas where additional research could be undertaken to enhance understanding and support the integration of TES into the wider strategy for meeting the UK’s decarbonisation targets and ensuring security of energy supply were identified:  Carrying out real world field trials for interseasonal TES, PCM and thermochemical heat storage to fully understand and evaluate technological performance.  Further advancing R&D in latent and thermochemical heat storage to support their development and future commercialisation.  Fully evaluating how different TES technologies, besides hot water tanks, can be integrated into the existing UK heating infrastructure.  Further analysing the use of thermal storage to optimise the sizing and efficiencies of boilers and other heating systems.  Better understanding how electric heating and CHP can be used with TES to provide benefits to the wider electricity system. 14

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