Dr. Rasoul Asaee

Image Rasoul Asaee
Chercheur Scientifique

Mes intérêts de recherche comprennent les bâtiments à consommation énergétique nette zéro, modélisation de logements, l’efficacité énergétique et des énergies renouvelables et des énergies de remplacement pour les bâtiments résidentiels et commerciaux.

Recherche et / ou projets en cours

Mon travail est axé sur la promotion de l’efficacité énergétique dans le parc de logements canadiens.

Énoncés de recherches/projets

  • De meilleures preuves pour mieux les codes du bâtiment
  • Évaluation de la technologie de logement plateforme

Activités professionnelles / intérêts

  • Ex-officio, Technical Committee, Net Zero Energy Housing Council, Canadian Home Builders' Association
  • Reviewer & Session Chair, Building Simulation Conference, IBPSA
  • Technical Reviewer, Multiple scientific journals

Prix et études

  • Postdoc, de l’Université de la Colombie-Britannique, 2018
  • Ph.D., Génie mécanique, Université Dalhousie, 2016
  • M.Sc., Génie mécanique, Université de Shiraz, 2011
  • B.Sc., Génie mécanique, Université de Shiraz, 2008

Principales publications

  1. Sharafian, A., Asaee, S. R., Herrera, O. E., & Mérida, W. (2019). Policy implications of liquefied natural gas use in heavy-duty vehicles: Examples in Canada and British Columbia. Transportation Research Part D: Transport and Environment, 69, 123-140.
  2. Asaee, S. R., Ugursal, V. I., & Beausoleil-Morrison, I. (2019). Development and analysis of strategies to facilitate the conversion of Canadian houses into net zero energy buildings. Energy Policy, 126, 118-130.
  3. Asaee, S. R., Sharafian, A., Herrera, O. E., Blomerus, P., & Mérida, W. (2018). Housing stock in cold-climate countries: Conversion challenges for net zero emission buildings. Applied Energy, 217, 88-100.
  4. Asaee, S. R., Nikoofard, S., Ugursal, V. I., & Beausoleil-Morrison, I. (2017). Techno-economic assessment of photovoltaic (PV) and building integrated photovoltaic/thermal (BIPV/T) system retrofits in the Canadian housing stock. Energy and Buildings, 152, 667-679.

  5. Asaee, S. R., Ugursal, V. I., & Beausoleil-Morrison, I. (2017). Techno-economic assessment of solar assisted heat pump system retrofit in the Canadian housing stock. Applied Energy, 190, 439-452.

  6. Asaee, S. R., Ugursal, V. I., & Beausoleil-Morrison, I. (2017). Techno-economic feasibility evaluation of air to water heat pump retrofit in the Canadian housing stock. Applied Thermal Engineering, 111, 936-949.

  7. Asaee, S. R., Ugursal, V. I., & Beausoleil-Morrison, I. (2016). Techno-economic study of solar combisystem retrofit in the Canadian housing stock. Solar Energy, 125, 426-443.

  8. Asaee, S. R., Ugursal, V. I., & Beausoleil-Morrison, I. (2015). An investigation of the techno-economic impact of internal combustion engine based cogeneration systems on the energy requirements and greenhouse gas emissions of the Canadian housing stock. Applied Thermal Engineering, 87, 505-518.

  9. Asaee, S. R., Ugursal, V. I., & Beausoleil-Morrison, I. (2015). Techno-economic evaluation of internal combustion engine based cogeneration system retrofits in Canadian houses–A preliminary study. Applied Energy, 140, 171-183.

  10. Asaee, S. R., Ugursal, V. I., Beausoleil-Morrison, I., & Ben-Abdallah, N. (2014). Preliminary study for solar combisystem potential in Canadian houses. Applied Energy, 130, 510-518.