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2021 Thermal Energy Storage Systems

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2021 Thermal Energy Storage Systems ( 2021-thermal-energy-storage-systems )

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Thermal Energy Storage Systems for Buildings Workshop Report • Better understanding is needed on how TES can help downsize chillers boilers and other prime drivers for thermal management. Additionally, TES can reduce the number of different units needed to install, creating commonality in a building, and reducing maintenance costs. • A market-driven approach to TES development would enable researchers to understand the customer needs and provide motivation to scale-up the material synthesis process while minimizing the cost. Utilization • Conventional PCMs have a fixed transition temperature that limits PCM utilization within a narrow operating temperature bound. Dynamically varying transition temperature using external excitations (e.g., electric/magnetic field or pressure) can make TES dynamic and responsive to the changing environment, thereby increasing TES utilization. • Ventilation loads are going to be higher in the future, which will shift loads from sensible to more latent loads. TES must be able to handle dehumidification as well as sensible control. Understanding Value • It could be beneficial to have a dashboard and better tools integrated into the system to know how the TES is performing over time. This helps with operation, but also gives some visibility to both the engineer and the building owner. • More people are becoming familiar with preconditioning to cool or heat buildings. This could be used as a springboard to expand openness to applications of other kinds of thermal storage. 27

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