A prospective Study on the Evolution of Airtightness in 41 low energy Dwellings

Author:

Verbeke Stijn,Audenaert Amaryllis

Abstract

Airtightness of the building envelope is an important parameter affecting the performance of (low energy) buildings. In case the airtightness is effectively measured, this is typically only done once as part of the commissioning of the construction work. Several factors could affect the evolution of the airtightness of the envelope after the building is constructed. In this work, follow-up airtightness tests have been carried out to investigate the evolution of the performance in the interval of 0.5 up to 12 years compared to the original pressurisation test. The results on 41 low-energy dwellings indicate that the airtightness is indeed not a fixed value over time. Of the 41 buildings, 29 display an increased air permeability resulting in an increase of up to 200% in relative terms or up to 1.36 ACH50 (air changes per hour at 50 Pa pressure difference [h-1]). Conversely, four of the buildings in the dataset show a significant improvement of the airtightness; resulting in a decrease of air leakage of up to -1.19 ACH50. Analysis of the data shows that on average the air permeability at 50 Pa pressure difference increased by 38%, but with great variation depending multiple factors such as initial airtightness value and construction type. This corresponds to an average increase of the specific air permeability of the building envelope of 0.15 m³/(h·m²). Most of the buildings under analysis are low energy buildings or passive houses which were very airtight at time of construction. Despite the observed evolution in air permeability, many buildings under investigation can still be considered sufficiently airtight a few years after initial construction.

Publisher

EDP Sciences

Reference19 articles.

1. Miszczuk A., “Influence of air tightness of the building on its energy-efficiency in single-family buildings in Poland,” MATEC Web Conf., vol. 117, 2017.

2. Air infiltration through building envelopes: A review

3. Raman G., Chelliah K., Prakash M., and Muehleisen R. T., “Detection and quantification of building air infiltration using remote acoustic methods,” INTERNOISE 2014-43rd Int. Congr. Noise Control Eng. Improv. World Through Noise Control, no. January, 2014.

4. Analyzing a database of residential air leakage in the United States

5. CEN, “EN ISO 52016-1:2017: Energy performance of buildings - Energy needs for heating and cooling, internal temperatures and sensible and latent heat loads – Part 1: Calculation procedures.” 2017.

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