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 11 KeyApplicationsandValueDrivers Deployment Prioritizations • We need to address the basic question of when in the sequence of grid-interactive efficient building measures do we implement TES? What is the priority of TES for single-family buildings, commercial buildings, city-scale multifamily buildings, etc.? • Markets with high renewable energy penetrations are likely to see larger variations in costs, and therefore would make them more suitable to have good payback. • Rooftop units can be found on commercial buildings of various sizes. The large size of the market for this equipment makes them attractive candidates for integrating with TES to spur rapid deployment. • The high utilization rates of refrigeration system can make them appealing candidates for TES because they have large loads that persist most of the time. • There could be some research focused on how to integrate TES into public housing. Centralized ownership makes this an attractive target for market entry. • When installed with new construction, the higher upfront cost of TES could be amortized into a mortgage on a new building purchase. • Space is a general requirement for many TES applications. Buildings and facilities with ample space should be targeted for early adoption. • Because there are several methods to include TES in buildings, a “TES selector” tool can help the installers choose the appropriate solution and make an informed decision without knowing the in-depth technical specifications of each technology. Storage Durations • Sensible TES materials are likely to be utilized for sub-hourly durations due to their limited storage capacity. Exceptions occur when sufficient volume is available to house large storage media. • Durations ranging from 1–8 hours can be provided by phase change and thermochemical materials at higher energy densities than sensible storage methods. Different durations needs may arise between heating and cooling applications as they tend to have different peak profiles throughout the day. • Seasonal energy storage can vastly increase the utilization of variable renewable generation. Certain TES materials, such as thermal chemical reactions, can store heat for long durations with minimal losses. 23

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