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Radiative Cooling Paints: Application on Warehouses and Integration with Phase Change Materials

  • Purdue University

Research output: NLRPoster

Abstract

Despite extensive research on radiative cooling (RC), researchers are still working to understand its best implementation strategy and potential benefits. Understanding this could be an instrumental part of reducing building energy costs and combating climate change. In this work, we introduce two concepts to achieve this goal and broaden the application of RC paints. While building energy simulations for RC are common, most studies focus on single-layer paints in residential settings. Limited research exists on warehouses, and no literature has conducted multi-climate zone analyses or included RC technologies with >90% reflectance. As RC technology advances in efficiency, versatility, and affordability, large-scale simulations across diverse climates are crucial, particularly for warehouses as a passive indoor temperature control solution. Here, a TRNSYS-modeled single-story warehouse assesses the energy impact of BaSO4-based RC paints. Another under-explored RC application is its integration with phase change materials (PCMs), which provide thermal regulation via latent heat storage. Though RC and PCMs have been combined by placing PCMs atop, beneath, or within RC layers, studies focus on either experiments or modeling, with no validation between the two. Here, we develop a simple RC+PCM experimental and modeling setup, placing RC paint atop an aluminum cell filled with a Rubitherm PCM.
Original languageAmerican English
PublisherNational Laboratory of the Rockies (NLR)
Number of pages1
DOIs
StatePublished - 2025

Publication series

NamePresented at the 12th ACM International Conference on Systems for Energy-Efficient Buildings, Cities, and Transportation (BuildSys), 19-21 November 2025, Golden, Colorado

NLR Publication Number

  • NLR/PO-5500-97861

Keywords

  • building envelope
  • heat transfer
  • HVAC
  • HVAC efficiency
  • phase change materials
  • radiative cooling
  • warehouse

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