SYMPOSIA PAPER Published: 20 June 2020
STP161720180110

Moisture Reduction Strategies for Building Envelopes

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Building envelope standards and practices have evolved over the past few decades in response to increased energy efficiency goals and a better understanding of building science. New materials, systems, and detailing methods help to reduce thermal bridging and to reduce air leakage through building envelopes. A building envelope assembly that is properly designed, detailed, and installed to today’s standards typically will perform as expected, reduce energy usage, and provide a durable and long-lasting assembly. However, these technologies are not a panacea for deficiencies in the construction process, deferred maintenance, or unforeseen occupant uses and alterations. The sheer multitude of components involved in today’s building envelopes and the airtightness of the assemblies themselves can lead to vulnerabilities exacerbated by any of these factors. Having investigated many building envelope failures, we have found that air barrier, roofing, and waterproofing perfection is challenging to achieve. The goal of this paper is to outline strategies to reduce or evacuate moisture from building envelopes without extensive replacement of components or systems. This paper presents case studies of existing buildings equipped with moisture-monitoring data loggers to evaluate initial conditions and verify moisture reduction over time. The data loggers collected readings at 5-min. intervals for temperature, relative humidity, and moisture content and have been in place for more than six years in some buildings. The primary moisture reduction strategies employed in these studies include added thermal protection, modification of heating systems, the introduction of active air movement, and ventilation of the roof assembly. The success of these strategies is verified with empirical data.

Author Information

Vorley, Wade, L.
Wiss, Janney, Elstner Associates, Inc., Seattle, WA, US
Drown, Lauran
Wiss, Janney, Elstner Associates, Inc., Seattle, WA, US
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Details
Developed by Committee: E06
Pages: 396–419
DOI: 10.1520/STP161720180110
ISBN-EB: 978-0-8031-7681-2
ISBN-13: 978-0-8031-7680-5