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Performance Investigation of High-temperature Latent Heat Storage for Integration with Advanced Nuclear Reactors

Research output: Contribution to conferencePaperpeer-review

Abstract

Integrating thermal energy storage (TES) with advanced nuclear reactors enhances the flexible use of nuclear energy, facilitating its expansion beyond conventional electricity generation. High-temperature TES, capable of storing heat above 400 degree C, emerges as a vital carbon-free energy solution for decarbonizing industrial sector, especially when combined with low-emission energy sources like advanced nuclear reactors. Idaho National Laboratory (INL) has recently developed a novel design for high-temperature latent heat storage system, called Heat pipe Integrated Thermal Battery (HITB), and efforts are underway to experimentally demonstrate the concept. HITB employs liquid-metal heat pipes to establish thermal linkage between TES and nuclear systems without direct fluid exchange, minimizing the potential risk of the integrated systems such as cross-contamination. HITB is designed to achieve high charging and discharging efficiency as well as high energy storage density by employing metal alloys as Phase Change Material (PCM). Initial proof-of-concept experiments are being undertaken using an aluminum alloy (Al59%-Mg35%-Zn6%). This paper discusses current progress of the HITB project at INL, seeking to develop high-temperature TES for versatile integration with advanced nuclear reactors, and shares insights from the performance evaluations via numerical modeling and analysis.
Original languageEnglish
StatePublished - Aug 2024
EventThe 14th International Topical Meeting on Nuclear Reactor Thermal-Hydraulics, Operation, and Safety (NUTHOS-14) - Vancouver, Canada
Duration: Aug 25 2024Aug 28 2024

Conference

ConferenceThe 14th International Topical Meeting on Nuclear Reactor Thermal-Hydraulics, Operation, and Safety (NUTHOS-14)
Country/TerritoryCanada
CityVancouver
Period08/25/2408/28/24

Keywords

  • 42 - ENGINEERING
  • 25 - ENERGY STORAGE
  • Thermal Energy Storage
  • Heat Pipe
  • Nuclear Integrated Energy System
  • Microreactor

INL Publication Number

  • INL/CON-24-77228
  • 171110

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