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作 者:Peng Xue Yi Shen Sheng Ye Jinqing Peng Yanyun Zhang Qianqian Zhang Yuying Sun
机构地区:[1]Beijing Key Laboratory of Green Built Environment and Energy Efficient Technology,Beijing University of Technology,Beijing 100124,China [2]Faculty of Architecture,Civil and Transportation Engineering,Beijing University of Technology,Beijing 100124,China [3]State Grid Zhongxing CO.,LTD,Lvyuan Branch,Beijing 100761,China [4]College of Civil Engineering,Hunan University,Changsha 410082,Hunan,China [5]Key Laboratory for New Functional Materials of Ministry of Education,Faculty of Materials and Manufacturing,Beijing University of Technology,Beijing 100124,China
出 处:《Building Simulation》2023年第12期2211-2224,共14页建筑模拟(英文)
基 金:the National Natural Science Foundation of China(51808011);the Natural Science Foundation of Chongqing(2022NSCQ-MSX5521).
摘 要:The secondary solar heat gain,defined as the heat flows from glazing to indoor environment through longwave radiation and convection,grows with the increasing of glazing absorption.With the rapid development and application of spectrally selective glazing,the secondary solar heat gain becomes the main way of glazing heat transfer and biggest proportion,and indicates it should not be simplified calculated conventionally.Therefore,a dynamic secondary solar heat gain model is developed with electrochromic glazing system in this study,taking into account with three key aspects,namely,optical model,heat transfer model,and outdoor radiation spectrum.Compared with the traditional K-Sc model,this new model is verified by on-site experimental measurements with dynamic outdoor spectrum and temperature.The verification results show that the root mean square errors of the interior and exterior glass surface temperature are 3.25°C and 3.33°C,respectively,and the relative error is less than 10.37%.The root mean square error of the secondary heat gain is 13.15 W/m2,and the dynamic maximum relative error is only 13.2%.The simulated and measured results have a good agreement.In addition,the new model is further extended to reveal the variation characteristics of secondary solar heat gain under different application conditions(including orientations,locations,EC film thicknesses and weather conditions).In summary,based on the outdoor spectrum and window spectral characteristics,the new model can accurately calculate the increasing secondary solar heat gain in real time,caused by spectrally selective windows,and will provide a computational basis for the evaluation and development of spectrally selective glazing materials.
关 键 词:econdary solar heat gain spectral-selective glazing solar spectrum dynamic heat transfer
分 类 号:TK515[动力工程及工程热物理—热能工程]
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