Impacts of Air Cavities on Hygrothermal Performance of Retrofitted Timber Frame Assemblies in Six US Climates

Author:

Recart Carolina123,Sturts Dossick Carrie123,Méndez Echenagucia Tomás123

Affiliation:

1. Ph.D. Candidate, Dept. of Civil and Environmental Engineering, Univ. of Washington, Seattle, WA. ORCID: .

2. Professor, Dept. of Construction Management, Univ. of Washington, Seattle, WA. ORCID: .

3. Assistant Professor, Dept. of Architecture, Univ. of Washington, Seattle, WA.

Publisher

American Society of Civil Engineers

Reference20 articles.

1. ASHRAE. (2021). ASHRAE 160p: Criteria for Moisture-Control Design Analysis in Buildings. Retrieved from Atlanta.

2. Climate classification for building energy codes and standards: Part 2-zone definitions, maps, and comparisons;Briggs R. S.;Ashrae Transactions,2003

3. DOE. (2022). Status of State Energy Code Adoption - Residential. Retrieved from https://www.energycodes.gov/status/residential.

4. Fraunhofer Institute. (2020). WUFI Software. Retrieved from https://wufi.de/en/.

5. Hägerstedt, S. O., and Arfvidsson, J. (2010, 2010). Comparison of field measurements and calculations of relative humidity and temperature in wood framed walls.

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