1 |
Performance of a natural ventilation system with heat recovery in UK classrooms: An experimental study Vivian DP, Samuel S, Dejan M, Yan KQ, Dimitris MM, Tom L Energy and Buildings, 179, 278, 2018 |
2 |
The application of ultra-fine fly ash in the seal coating for the wall of underground coal mine Song HP, Liu JQ, Xue FB, Cheng FQ Advanced Powder Technology, 27(4), 1645, 2016 |
3 |
Forty years of regulations on the thermal performance of the building envelope in Europe: Achievements, perspectives and challenges Papadopoulos AM Energy and Buildings, 127, 942, 2016 |
4 |
Validation of neural network model for predicting airtightness of residential and non-residential units in Poland Krstic H, Otkovic II, Kosinski P, Wojcik R Energy and Buildings, 133, 423, 2016 |
5 |
The effect of an enclosure retrofit on air leakage rates for a multi-unit residential case-study building Urquhart R, Richman R, Finch G Energy and Buildings, 86, 35, 2015 |
6 |
Air infiltration assessment for industrial buildings Brinks P, Kornadt O, Oly R Energy and Buildings, 86, 663, 2015 |
7 |
Thermal performance of a nearly zero energy passive house integrated with the air-air heat exchanger and the earth-water heat exchanger Chel A, Janssens A, De Paepe M Energy and Buildings, 96, 53, 2015 |
8 |
Experimental and numerical investigations for comparing the thermal performance of infrared reflecting insulation and of mineral wool Hauser G, Kersken M, Sinnesbichler H, Schade A Energy and Buildings, 58, 131, 2013 |
9 |
Feasibility of building envelope air leakage measurement using combination of air-handler and blower door Kim MH, Jo JH, Jeong JW Energy and Buildings, 62, 436, 2013 |
10 |
Exploring the concept of compressed air energy storage (CAES) in lined rock caverns at shallow depth: A modeling study of air tightness and energy balance Kim HM, Rutqvist J, Ryu DW, Choi BH, Sunwoo C, Song WK Applied Energy, 92, 653, 2012 |