THERMAL ENERGY STORAGE Outlook

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

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District heating and cooling TTES is deployed widely throughout the world and ice TES is currently used in district cooling schemes. Other PCMs and thermochemical TES technologies are on the way and expected to help decarbonise this sector. Sensible storage technologies such as TTES and UTES are widely used in conjunction with district heating schemes today. Ice and other PCM-based solutions have also been implemented in district cooling. The key benefit of using TES in district heating and cooling is its ability to decouple heat and cold generation from consumption, giving the possibility to store energy across a range of timescales, from hourly to a seasonal basis. In the medium term other innovative PCM and solid-state solutions could integrate high shares of renewables via power-to-heat or via seasonal solar thermal schemes, as successfully trialled in Canada, China and Europe. Efficiency levels of over 92% are expected for TES technologies used in industrial applications by 2030. In the next 10 years ongoing research and demonstration of PCMs for use in cooling are expected to drive wider deployment. By 2050 thermochemical systems could enter the demonstration phase, with prices as low as USD 10/kWh, to enhance opportunities for renewables deployment in district heating and cooling, especially in combined cooling and power applications. In this decade, sector integration and smart control technologies should intensify opportunities, particularly for facilitating the harvesting (and storage) of waste heat/cold from industrial applications (Figure 10). Storage capacity linked to district heating and cooling networks serves to decouple their generation requirements from consumption. 28 INNOVATION OUTLOOK

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