The influence of turbulent wind on air change rates—a modelling approach F Haghighat, J Rao, P Fazio Building and environment 26 (2), 95-109, 1991 | 130 | 1991 |
Modelling air infiltration due to wind fluctuations—a review F Haghighat, H Brohus, J Rao Building and Environment 35 (5), 377-385, 2000 | 104 | 2000 |
Development of HAM tool for building envelope analysis Q Li, J Rao, P Fazio Building and environment 44 (5), 1065-1073, 2009 | 97 | 2009 |
PCM thermal energy storage in buildings: experimental study and applications F Guarino, V Dermardiros, Y Chen, J Rao, A Athienitis, M Cellura, ... Energy Procedia 70, 219-228, 2015 | 77 | 2015 |
An investigation of moisture buffering performance of wood paneling at room level and its buffering effect on a test room Y Li, P Fazio, J Rao Building and Environment 47, 205-216, 2012 | 69 | 2012 |
Influence of moisture load profiles on moisture buffering potential and moisture residuals of three groups of hygroscopic materials H Ge, X Yang, P Fazio, J Rao Building and Environment 81, 162-171, 2014 | 57 | 2014 |
Environmental chamber for investigation of building envelope performance P Fazio, AK Athienitis, C Marsh, J Rao Journal of Architectural Engineering 3 (2), 97-102, 1997 | 56 | 1997 |
Evaluation of radiance's genBSDF capability to assess solar bidirectional properties of complex fenestration systems G Molina, W Bustamante, J Rao, P Fazio, S Vera Journal of Building Performance Simulation 8 (4), 216-225, 2015 | 53 | 2015 |
Evaluation of moisture buffering capacity of interior surface materials and furniture in a full-scale experimental investigation X Yang, P Fazio, H Ge, J Rao Building and Environment 47, 188-196, 2012 | 51 | 2012 |
A study of hybrid ventilation in an institutional building for predictive control S Yuan, C Vallianos, A Athienitis, J Rao Building and Environment 128, 1-11, 2018 | 42 | 2018 |
Experimental study of air-to-air heat exchangers for use in arctic housing C Beattie, P Fazio, R Zmeureanu, J Rao Applied Thermal Engineering 129, 1281-1291, 2018 | 41 | 2018 |
Interzonal air and moisture transport through large horizontal openings in a full-scale two-story test-hut: Part 2–CFD study S Vera, P Fazio, J Rao Building and Environment 45 (3), 622-631, 2010 | 34 | 2010 |
Experimental study of thermal and airtightness performance of structural insulated panel joints in cold climates A Kayello, H Ge, A Athienitis, J Rao Building and Environment 115, 345-357, 2017 | 33 | 2017 |
A new test method to determine the relative drying capacity of building envelope panels of various configurations A Alturkistani, P Fazio, J Rao, Q Mao Building and Environment 43 (12), 2203-2215, 2008 | 27 | 2008 |
Full-scale experimental investigation of moisture buffering effect and indoor moisture distribution X Yang, S Vera, J Rao, H Ge, P Fazio Thermal Performance of Exterior Envelopes of Whole Buildings X. Florida, USA …, 2007 | 23 | 2007 |
Hybrid ventilation in an institutional building: Modeling and predictive control C Vallianos, A Athienitis, J Rao Building and Environment 166, 106405, 2019 | 22 | 2019 |
In-cavity evaporation allowance—A drying capacity indicator for wood-frame wall system Q Mao, P Fazio, J Rao Building and Environment 44 (12), 2418-2429, 2009 | 18 | 2009 |
A procedure for measurement of ventilation effectiveness in residential buildings F Haghighat, P Fazio, J Rao Building and Environment 25 (2), 163-172, 1990 | 18 | 1990 |
Large scale experimental investigation of the relative drying capacity of building envelope panels of various configurations P Fazio, J Rao, A Alturkistani, H Ge Research in Building Physics and Building Engineering, 361-368, 2020 | 17 | 2020 |
Interzonal air and moisture transport through large horizontal openings in a full-scale two-story test-hut: Part 1–Experimental study S Vera, P Fazio, J Rao Building and Environment 45 (5), 1192-1201, 2010 | 17 | 2010 |