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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 Table 22 – Review of key commercialisation gaps Lack of dynamic electricity tariffs, and other sources of value for time- shifting demand affecting confidence of both end-users and developers. Key Gaps Discussion of gap Electricity price signals Scaling production and size of projects Uncertainty over the scalability of products and implementation of large projects remains. Many applications have been proven at a smaller scale / as a demonstrator, but actual performance and cost efficiency is likely to be proven only by carrying out larger volume / a larger number of projects. Physical constraints Better understanding of physical space constraints for TES applications in the UK and how to overcome them. PCM PCMs are increasingly close to being commercialised, with some products already launched. There remains a gap around the development of PCMs with the right temperature input for heat pumps. Secondly the development and commercialisation of hybrid TTES / PCM products remains an area open for further research. Development of clear standards for different types of TES Throughout the research it was expressed that there is a need for clear standards of performance for different types of TES, especially as new products using PCM are developed. The review of standards was not in the scope of this report so commentary on this subject was excluded. Similarly some concerns were raised that there is uncertainty around standards and guidelines for integrating thermal storage with different renewable heating technologies. 74

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