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Experimental Characterization and Potential Energy Savings of Insulated Cladding for U.S. Residential Buildings: Article No. 116590

  • National Laboratory of the Rockies
  • Liatris Inc.

Research output: Contribution to journalArticlepeer-review

Abstract

This study evaluates a novel insulated cladding composed of foamed cement and vinyl siding that is designed as a retrofit product to enhance thermal performance in U.S. residential buildings. Experimental measurements showed that foamed cement exhibits a thermal conductivity of 0.0334-0.0365 W/m-K (R-value of 4.0-4.3 degrees F ft2 h/BTU), which is significantly higher than that of conventional fiber cement boards. Although mechanical testing confirmed the material's brittleness and low strength, it also indicated its suitability for nonstructural insulation applications. Water vapor permeability testing demonstrated effective moisture resistance with the polymer coating. To evaluate the insulated cladding's energy performance, we used the U.S. Department of Energy's prototype single-family building model and simulated across 50 locations spanning 16 International Energy Conservation Code climate zones. The R-7 (R-value of 7 degrees ft2 h/BTU per inch) retrofit cladding resulted in heating energy savings up to 275 therms (Fairbanks, AK) and cooling energy savings up to 1,547 kWh (Phoenix, AZ). The energy cost savings varied by region, but the highest annual cost savings ($434/year) were observed in Santa Maria, CA, and the highest annual cost savings percentage (37%) were noted in Monterey, CA. On a national scale, the insulated retrofit provided an average annual energy cost reduction of 16%, highlighting the cladding system's broad applicability and financial viability.
Original languageAmerican English
Number of pages13
JournalEnergy and Buildings
Volume350
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5500-95751

Keywords

  • building energy efficiency
  • building envelopes
  • energy savings
  • heat flow meter
  • insulated cladding
  • mechanical tests
  • moisture permeability
  • R-value
  • thermal conductivity

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