参考文献/References:
[1] 王登甲, 吴航, 刘艳峰, 等. 孤立岛礁自持化光伏空调建筑能量平衡优化匹配研究[J].太阳能学报, 2020(7):105-112.
WANG Dengjia, WU Hang, LIU Yanfeng, et al. Research on optimal matching of energy balance of self-sustained PV air-conditioning building in isolated island[J]. Acta Energiae Solaris Sinica, 2020(7):105- 112.
[2]GONZáLEZ-JULIáN E, XAMáN J, MORAGA NO, et al. Annual thermal evaluation of a double pane window using glazing available in the Mexican market[J]. Applied Thermal Engineering, 2018, 143: 100-111.
[3]MORETTI E, ZINZI M, MERLI F, et al. Optical, thermal, and energy performance of advanced polycarbonate systems with granular aerogel[J]. Energy and Buildings, 2018, 166:407-417.
[4]ZHONG KC, LI SH, SUN GF, ET AL. Simulation study on dynamic heat transfer performance of PCM-filled glass window with different thermophysical parameters of phase change material[J]. Energy and Buildings,2015, 106: 87-95.
[5]JIANG W, LIU B, ZHANG X et al. Energy performance of window with PCM frame[J]. Sustainable Energy Technologies and Assessments,2021, 45: 1-9.
[6]JALAL M J, SALIH M S. Experimental and numerical investigation of paraffin wax as thermal insulator in a double glazed window[J]. Journal of Energy Storage,2021, 35:1-12.
[7]LI D, WU Y Y, WANG B C, et al. Optical and thermal performance of glazing units containing PCM in buildings: A review[J]. Construction and Building Materials, 2020, 233: 1-25.
[8]BHAMARE D K, RATHOD M K, BANERJRR J. Numerical model for evaluating thermal performance of residential building roof integrated with inclined phase change material(PCM)layer[J]. Journal of Building Engineering, 2020, 28:1-10.
[9]MORETTI E, BELLONI E, MERLI F, et al. Laboratory and pilot scale characterization of granular aerogel glazing systems[J]. Energy and Buildings, 2019, 202:1-15.
[10]BURATTI C, MORETTI E, ZINZI M. High energy-efficient windows with silica aerogel for building refurbishment: experimental characterization and preliminary simulations in different climate conditions[J]. Buildings, 2017, 7(1):1-12.
[11]MEMON Ali S. Phase change materials integrated in building walls: A state of the art review[J]. Renewable and Sustainable Energy Reviews, 2014, 31:870-906.
[12]ANNA W, DARIUSZ H. Modeling of thermal processes in a glazing structure with temperature dependent optical properties-An example of PCM-window[J]. Renewable Energy, 2020, 160:653-662.
[13]QIAN W, WU R, YU W, et al. Parametric analysis of using PCM walls for heating loads reduction[J]. Energy and Buildings, 2018, 172:65-72.
[14]ZHANG S, HU W Y,LI D, et al. Energy efficiency optimization of PCM and aerogel-filled multiple glazing windows[J]. Energy,2021, 222:119916.
[15]LI D, WU Y Y, ZHANG G J, et al. Influence of glazed roof containing phase change material on indoor thermal environment and energy consumption[J]. Applied Energy, 2018, 222:343-350.
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