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Airtightness testing and air flow modeling of two and three-unit multifamily buildings

Depani, S. and Fazio, P.
2001
eSim 2001: Canadian Conference on Building Energy Simulation, June 13-14, Ottawa, Canada


Depani, S. and Fazio, P., (2001), "Airtightness testing and air flow modeling of two and three-unit multifamily buildings", eSim 2001: Canadian Conference on Building Energy Simulation, June 13-14, Ottawa, Canada.
Abstract:
Older multifamily buildings offer a great opportunity for energy savings because they are typically poorly insulated and not airtight. Weatherization programs, such as Hydro-Quebec's ISOLACTION program, have recently targeted this building stock. These programs and the emergence of the renovation market have created a need for practical tools that can be used by the building industry to evaluate the impact of retrofits on nergy and ventilation.

This paper presents a ventilation case study for a threeunit multifamily building. Both the external and the inter-unit air leakage characteristics of the building were obtained using a single-fan blower door method. This method produces significantly more valuable data than is currently obtained with the whole building depressurization technique. A steady state ventilation model was used with the in-situ test results to investigate the outdoor air distribution and the impact of exhaust ventilation on a unit-per-unit basis. these dwellings is that individual units usually have separate entrances and civic addresses, as detached houses do.


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Author Information and Other Publications Notes
Depani, S.
GES Technologies, 6705 Jean-Talon East, Ste. 101, Montreal, Quebec, Canada, HIS 1N2
  1. A study on single blower door methods for multifamily buildings in Montreal (Quebec)
  2. Airtightness testing of two- and three-unit buildings with a single fan
  3. Testing of flat roofs insulated with cellulose fiber  
Fazio, P.
Paul Fazio, Professor of Building, Civil & Environmental Engineering, Concordia University, Montreal
  1. A limit state design (LSD) approach for comparing relative drying performance of wood-frame envelope systems with full-scale lab, A roadmap towards intelligent net zero- and positive-energy buildings,
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  4. A quantitative study for the measurement of driving rain exposure in the Montr¨¦al region
  5. A review of research activities in energy efficiency in buildings in Canada
  6. Airtightness testing of two- and three-unit buildings with a single fan
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