1 |
Optimal roof structure with multilayer cooling function materials for building energy saving Zhang YX, Huang JC, Fang XM, Ling ZY, Zhang ZG International Journal of Energy Research, 44(3), 1594, 2020 |
2 |
Experimental and numerical study of a PCM solar air heat exchanger and its ventilation preheating effectiveness Hu Y, Heiselberg PK, Johra H, Guo R Renewable Energy, 145, 106, 2020 |
3 |
A model-based control strategy to recover cooling energy from thermal mass in commercial buildings Shan K, Wang JY, Hu MM, Gao DC Energy, 172, 958, 2019 |
4 |
Phase change material (PCM) incorporated bricks for energy conservation in composite climate: A sustainable building solution Saxena R, Rakshit D, Kaushik SC Solar Energy, 183, 276, 2019 |
5 |
Salt hydrate/expanded vermiculite composite as a form-stable phase change material for building energy storage Xie N, Luo JM, Li ZP, Huang ZW, Gao XN, Fang YT, Zhang ZG Solar Energy Materials and Solar Cells, 189, 33, 2019 |
6 |
Study on the coupling heating system of floor radiation and sunspace based on energy storage technology Lu SL, Tong HJ, Pang B Energy and Buildings, 159, 441, 2018 |
7 |
The creation of weather data for AC design using two weather indices for Osaka Yuan J, Emura K, Farnham C, Lu S, He C Energy and Buildings, 134, 248, 2017 |
8 |
Cross-cultural assessment of the effectiveness of eco-feedback in building energy conservation Ma GF, Lin J, Li N, Zhou JJ Energy and Buildings, 134, 329, 2017 |
9 |
Y Coupled heat and moisture transfer in hollow concrete block wall filled with compressed straw bricks Hou SD, Liu FS, Wang SJ, Bian HB Energy and Buildings, 135, 74, 2017 |
10 |
Occupancy detection in the office by analyzing surveillance videos and its application to building energy conservation Zou JH, Zhao QC, Yang W, Wang FL Energy and Buildings, 152, 385, 2017 |