Air leakage path affect infiltration and air pressure conditions in building. The main objectives of this study were to analyse the distribution of the air leakage places and thermal bridges in detached houses and apartment buildings. Field measurements of the airtightness and thermography measurements have been carried out in 8 detached houses and 9 apartments during the years 2005-2006 in Finland. Using the standardized BlowerDoor pressurization technique, the air leakage rate of each house and apartment was determined during summer season. To determine typical air leakages and thermal bridges and their distribution, an infrared image camera and a smoke detector were used during cold period. Temperature factor was used to determine and to classify thermal bridges. Relative decrease of the surface temperature was used to determine and to classify air leakage places. Typical thermal bridges in the studied detached houses were around the doors and windows. Low temperatures were determined also in the junction of the base floor with the external wall. Typical air leakages were in the junction of roof with the external wall, penetrations through the air barrier systems, and around and through windows and doors. Typical thermal bridges in the studied apartments were around the doors and windows. Typical air leakages were around and through windows and doors, in the junction of ceiling/floor with the external wall, penetrations through the air barrier systems, and walls and floors between apartments.
[1]
Targo Kalamees,et al.
Air tightness and air leakages of new lightweight single-family detached houses in Estonia
,
2007
.
[2]
A. Janssens,et al.
Interstitial Condensation Due to Air Leakage: A Sensitivity Analysis
,
2003
.
[3]
Ove Lagerqvist,et al.
A Probabilistic Approach for Evaluation of Radon Concentration in the Indoor Environment
,
2005
.
[4]
W W Nazaroff,et al.
Radon entry into houses having a crawl space.
,
1985,
Health physics.
[5]
M. Kilpelainen,et al.
Heat and moisture distribution at the connection of floor and external wall in multi-storey timber frame houses
,
2000
.
[6]
Juha Jokisalo,et al.
Simulation of energy consumption in typical Finnish detached house
,
2002
.
[7]
Eva Sikander,et al.
Kritiskt fukttillstånd för mikrobiell tillväxt på byggmaterial - kunskapssammanfattning
,
2005
.
[8]
Targo Kalamees.
Critical values for the temperature factor to assess thermal bridges
,
2006,
Proceedings of the Estonian Academy of Sciences. Engineering.