Evaluating Patterns of Building Envelope Air Leakage with Infrared Thermography
Autor: | Voytek Gretka, Thomas Froese, Stephen Wong, Phalguni Mukhopadhyaya, Milad Mahmoodzadeh |
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Rok vydání: | 2020 |
Předmět: |
Control and Optimization
Blower door Infrared 020209 energy air leakage area Energy Engineering and Power Technology 02 engineering and technology 010501 environmental sciences lcsh:Technology 01 natural sciences Thermal 0202 electrical engineering electronic engineering information engineering qualitative analysis Retrofitting Electrical and Electronic Engineering Engineering (miscellaneous) Air barrier 0105 earth and related environmental sciences quantitative analysis lcsh:T Renewable Energy Sustainability and the Environment pressure differences infrared thermography Thermography Environmental science Energy (signal processing) Building envelope Energy (miscellaneous) Marine engineering |
Zdroj: | Energies, Vol 13, Iss 3545, p 3545 (2020) Energies; Volume 13; Issue 14; Pages: 3545 |
ISSN: | 1996-1073 |
DOI: | 10.3390/en13143545 |
Popis: | The next-generation performance-based building energy codes are focusing on minimizing building envelope air leakage. The quantification of air leakage in buildings is typically performed with a blower door test. However, this test does not provide information about the locations of air leakage. The aim of this study is to demonstrate a method involving qualitative and quantitative components that can be used to characterize locations of air leakage with infrared thermography. Since air leakage can have a significant impact on building energy consumption in cold climates, like in Canada, this approach can quickly inform where air barrier discontinuities occurred during construction or where to selectively target air sealing efforts in existing buildings. The observations from this study are presented, based on a thermographic image analysis during a depressurized blower door test at various pressures, in an attempt to quantify the relative rates of air leakage. The results from the investigation showed that infrared thermography (IRT) was able to discern locations and infer relative ratios of air leakage. The qualitative analysis showed that areas of air leakage are more evident under higher pressure difference. The quantitative approach showed that a minimum of 25 Pa pressure difference was required to detect the air leakage in the vicinity of the window frame, as the surface temperature decreased rapidly (almost 60% of the indoor surface/outdoor air temperature difference) at this pressure. A temperature index was defined to prioritize the areas of air leakage for retrofitting purposes. Furthermore, a thermal image subtraction method was used to determine the characteristics of the cracks based on thermal patterns. Finally, the practical implication of this study, for building developers, home inspectors, property mangers, and homeowners, is the early detection of air leakage for both existing and newly constructed buildings which could result in energy and cost savings. |
Databáze: | OpenAIRE |
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