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High Contrast Pattern Projection to Enable Background Oriented Schlieren Based Air Leak Detection Through Any Interior or Exterior Building Surface

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Air leakage in buildings wastes an estimated 4 quads of energy per year in the United States. Finding and sealing leakage sites is critical in existing buildings. Previous work has shown that background oriented Schlieren (BOS) imaging can be used to visualize air leakage but requires the leak to exit through a high contrast surface like a brick wall. To remedy this, different techniques of projecting various high contrast patterns on low contrast building surfaces like interior gypsum walls or vinyl siding were investigated. For each technique, the background quality was measured and compared to an ideal printed random dot background. The background quality metrics were correlated with the measured visualization metrics to understand which metrics are most important for maximizing air leak visualization performance. In this work, leakage visualization performance is presented for these various projected backgrounds with an aim to expand the building surfaces suitable for the BOS leak detector.

Original languageEnglish
Title of host publicationThermal Performance of the Exterior Envelopes of Whole Buildings XVI International Conference
PublisherAmerican Society of Heating Refrigerating and Air-Conditioning Engineers
ISBN (Electronic)9781964173344
DOIs
StatePublished - 2025
Event16th International Conference on Thermal Performance of the Exterior Envelopes of Whole Buildings 2025 - Clearwater, United States
Duration: Dec 8 2025Dec 11 2025

Publication series

NameThermal Performance of the Exterior Envelopes of Whole Buildings
ISSN (Electronic)2166-8469

Conference

Conference16th International Conference on Thermal Performance of the Exterior Envelopes of Whole Buildings 2025
Country/TerritoryUnited States
CityClearwater
Period12/8/2512/11/25

Funding

This work was funded through the Building Technology Office under the U.S. Department of Energy. Special thanks to Sven Mumme and Marc LaFrance, as DOE technology managers, for their leadership of this project.

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