Published on in Vol 6, No 5 (2022): May

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/34104, first published .
Indoor Temperatures in the 2018 Heat Wave in Quebec, Canada: Exploratory Study Using Ecobee Smart Thermostats

Indoor Temperatures in the 2018 Heat Wave in Quebec, Canada: Exploratory Study Using Ecobee Smart Thermostats

Indoor Temperatures in the 2018 Heat Wave in Quebec, Canada: Exploratory Study Using Ecobee Smart Thermostats

Journals

  1. Rezvanpour M, Chen Y. Space Cooling Energy Potential of Domestic Cold Water before Household Consumption in Cold-Climate Regions. Buildings 2023;13(6):1491 View
  2. Rezvanpour M, Cruz-Noguez C, Chen Y. Generalizable Thermal Performance of Ventilated Block Walls and Energy Implication of Substitution for Wood-Frame Walls in Cold-Climate Buildings. Buildings 2023;13(7):1577 View
  3. Baba F, Cheong K, Ge H, Zmeureanu R, Wang L, Qi D. Comparing overheating risk and mitigation strategies for two Canadian schools by using building simulation calibrated with measured data. Journal of Building Performance Simulation 2023:1 View
  4. Januário W, Lessa N, Schittine A, Prata E, Marins J, Natali A, Wanner S, Prímola-Gomes T. Validity and reproducibility of the CALERA Research Sensor to estimate core temperature at different intensities of a cycling exercise in the heat. Journal of Thermal Biology 2024;123:103907 View
  5. Côté J, Levac E, Germain M, Lavigne E. Projected risk and vulnerability to heat waves for Montreal, Quebec, using Gaussian processes. Sustainable Cities and Society 2024;116:105907 View

Books/Policy Documents

  1. McGregor G. Heatwaves. View