Driving factors for occupant-controlled space heating in residential buildings S Wei, R Jones, P De Wilde Energy and Buildings 70, 36-44, 2014 | 244 | 2014 |
Developing window behavior models for residential buildings using XGBoost algorithm H Mo, H Sun, J Liu, S Wei Energy and Buildings 205, 109564, 2019 | 160 | 2019 |
A study on influential factors of occupant window-opening behavior in an office building in China S Pan, Y Xiong, Y Han, X Zhang, L Xia, S Wei, J Wu, M Han Building and environment 133, 41-50, 2018 | 121 | 2018 |
Thermal performance of an active-passive ventilation wall with phase change material in solar greenhouses C Chen, H Ling, ZJ Zhai, Y Li, F Yang, F Han, S Wei Applied energy 216, 602-612, 2018 | 112 | 2018 |
Effects of indoor humidity on building occupants’ thermal comfort and evidence in terms of climate adaptation D Kong, H Liu, Y Wu, B Li, S Wei, M Yuan Building and Environment 155, 298-307, 2019 | 108 | 2019 |
Identifying informative energy data in Bayesian calibration of building energy models W Tian, S Yang, Z Li, S Wei, W Pan, Y Liu Energy and Buildings 119, 363-376, 2016 | 101 | 2016 |
A review on applications of shape-stabilized phase change materials embedded in building enclosure in recent ten years N Zhu, S Li, P Hu, S Wei, R Deng, F Lei Sustainable cities and society 43, 251-264, 2018 | 98 | 2018 |
A computational model to determine the optimal orientation for solar greenhouses located at different latitudes in China C Chen, Y Li, N Li, S Wei, F Yang, H Ling, N Yu, F Han Solar Energy 165, 19-26, 2018 | 95 | 2018 |
Effect of phase change materials on indoor thermal environment under different weather conditions and over a long time H Ling, C Chen, S Wei, Y Guan, C Ma, G Xie, N Li, Z Chen Applied Energy 140, 329-337, 2015 | 86 | 2015 |
A model based on Gauss Distribution for predicting window behavior in building S Pan, Y Han, S Wei, Y Wei, L Xia, L Xie, X Kong, W Yu Building and Environment 149, 210-219, 2019 | 78 | 2019 |
Ventilation behavior in residential buildings with mechanical ventilation systems across different climate zones in China D Lai, Y Qi, J Liu, X Dai, L Zhao, S Wei Building and Environment 143, 679-690, 2018 | 66 | 2018 |
A review on available energy saving strategies for heating, ventilation and air conditioning in underground metro stations Y Yu, S You, H Zhang, T Ye, Y Wang, S Wei Renewable and Sustainable Energy Reviews 141, 110788, 2021 | 64 | 2021 |
Utilization of mineral wool waste and waste glass for synthesis of foam glass at low temperature R Ji, Y Zheng, Z Zou, Z Chen, S Wei, X Jin, M Zhang Construction and building materials 215, 623-632, 2019 | 63 | 2019 |
A review on recent development of cooling technologies for photovoltaic modules C Zhang, C Shen, S Wei, Y Wang, G Lv, C Sun Journal of Thermal Science 29, 1410-1430, 2020 | 59 | 2020 |
Mathematical modeling and performance analysis of a solar air collector with slit-perforated corrugated plate H Zhang, X Ma, S You, Y Wang, X Zheng, T Ye, W Zheng, S Wei Solar Energy 167, 147-157, 2018 | 58 | 2018 |
Active heat storage characteristics of active–passive triple wall with phase change material H Ling, C Chen, Y Guan, S Wei, Z Chen, N Li Solar energy 110, 276-285, 2014 | 56 | 2014 |
Individual thermal comfort prediction using classification tree model based on physiological parameters and thermal history in winter Y Wu, H Liu, B Li, R Kosonen, S Wei, J Jokisalo, Y Cheng Building Simulation, 1-15, 2021 | 55 | 2021 |
Factors affecting ‘end-of-day’window position in a non-air-conditioned office building S Wei, R Buswell, D Loveday Energy and Buildings 62, 87-96, 2013 | 53 | 2013 |
Orientation effect on thermal and energy performance of vertical greenery systems L Pan, S Wei, LM Chu Energy and Buildings 175, 102-112, 2018 | 51 | 2018 |
Indicators evaluating thermal inertia performance of envelops with phase change material H Ling, C Chen, H Qin, S Wei, J Lin, N Li, M Zhang, N Yu, Y Li Energy and Buildings 122, 175-184, 2016 | 50 | 2016 |