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Library

This library contains research reports produced by the Building America program and other building science resources used to support this Solution Center. The materials cover both new construction and existing homes. Use the search box and/or the filters to explore hundreds of residential building resources. Access to some references not produced by Building America may require purchase from the publisher. Documents are listed alphabetically. While we continually update our database, links may have changed since posting. Please contact our webmaster if you find broken links.

Author(s): Hodgson, Moyer, Beal
Organization(s): LBNL
Publication Date: September, 2005
A report describing six mechanical ventilation strategies that were evaluated for their ability to control indoor humidity levels over 14-day periods with simulated occupancy.
Author(s): Kerrigan, Norton
Organization(s): Building Science Corporation
Publication Date: October, 2014

In this report, BSC seeks to research and report on the field monitoring of the performance of in-situ supplemental dehumidification systems in low-energy, high performance, homes in a Zone 2 climate.

Author(s): Vieira, Parker, Fairey III, Sherwin, Withers, Hoak
Organization(s): BA-PIRC, Florida Solar Energy Center, FSEC
Publication Date: September, 2013

Research study outlining savings from reducing air infiltration, with and without the addition of mechanical ventilation, using two identical laboratory homes designed to model existing Florida building stock.

Author(s): Winkler, Christensen, Tomerlin
Organization(s): National Renewable Energy Laboratory
Publication Date: December, 2011

Report documenting the measured performance of six residential ENERGY STAR vapor compression dehumidifiers.

Author(s): Fonorow, Jenkins, Thomas-Rees, Chandra
Organization(s): FSEC
Publication Date: October, 2010
Document presenting a cost effective method that was used by four builders in the Gainesville, FL area to construct interior ducts in over a dozen site built homes.
Author(s): Rudd
Organization(s): Building Science Corporation, BSC
Publication Date: October, 2014

Report describing solutions for supplemental dehumidification in warm-humid climates. 

Author(s): Moyer, Stroer, Hoak, McIlvaine, Chandra
Organization(s): FSEC
Publication Date: December, 2008

Document presenting results from testing HVAC duct system design incorporating a high-side supply register.

Author(s): Rudd, Lstiburek, Eng, Ueno
Organization(s): Building Science Corporation, National Renewable Energy Laboratory
Publication Date: February, 2005

Research study identifying the best performing, most energy-efficient and cost- effective techniques to provide controlled mechanical ventilation and humidity control in hot- humid climates with thermally efficient building envelopes.

Author(s): Rudd
Organization(s): Building Science Corporation
Publication Date: July, 2013

This document covers a description of the need and applied solutions for supplemental dehumidification in warm-humid climates, especially for energy efficient homes where the sensible cooling load has been dramatically reduced.

Author(s): Building Science Corporation
Organization(s): Building Science Corporation
Publication Date: May, 2009

Information sheet offering general recommendations on supplemental humidity control and outlines viable system configurations.

Author(s): Fang, Winkler, Christensen
Organization(s): National Renewable Energy Laboratory
Publication Date: December, 2011

Research study that utilizes EnergyPlus equipped with the moisture capacitance model to analyze the indoor relative humidity in three home types.

Author(s): Fairey, Parker, Vieira, Martin
Organization(s): FSEC
Publication Date: September, 2014
Preliminary results of two monitored lab homes constructed to represent the thermal characteristics of typical existing Florida homes are presented.
Author(s): Rudd, Lstiburek
Organization(s): Building Science Corporation
Publication Date: March, 2005

This report describes how twenty homes were tested and monitored in the Zone 2 climate of Houston, Texas, U.S.A., to evaluate the humidity control performance and operating cost of six different integrated dehumidification and ventilation systems that could be applied by production homebuilders.