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Heating and Cooling Performance of Office Buildings with a-Si BIPV Windows Considering Operating Conditions in Temperate Climates: The Case of Korea

机译:考虑到温带气候下的运行条件的a-Si BIPV窗户的办公楼的制冷和制冷性能:韩国

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This study analyzed the heating and cooling performance of an office building in Daegu, Korea, equipped with amorphous-Si (a-Si) building-integrated photovoltaic (BIPV) windows. EnergyPlus was used to simulate and compare the heating and cooling loads of models for clear glass double-layer, heat-absorbing glass double-layer, and low-emissivity (low-e) glass double-layer windows. In addition, the impact of changes in building operation time, temperature settings, air infiltration from the entrances, and internal load were also analyzed as these all have a large impact on heating and cooling loads. Finally, three types of heating and cooling equipment were tested, and their power and primary energy consumption analyzed, to determine the actual energy used. Under baseline conditions, there was an 18.2% reduction in heating and cooling loads when the BIPV model was used compared to when the clear glass double-layer window was used. In addition, increases in temperature settings and air infiltration from the entrances had a negative effect on the reduction of the heating and cooling loads demonstrating a need for intensive management of these features if a-Si BIPV windows are installed in a building.
机译:这项研究分析了韩国大邱一栋办公楼的供暖和制冷性能,该办公楼配备了非晶硅(a-Si)建筑物集成光伏(BIPV)窗户。 EnergyPlus用于模拟和比较透明玻璃双层,吸热玻璃双层和低辐射率(low-e)玻璃双层窗户模型的加热和冷却负荷。此外,还分析了建筑物运行时间,温度设置,入口处的空气渗透和内部负载变化的影响,因为这些因素都对供暖和制冷负载产生很大影响。最后,测试了三种类型的加热和冷却设备,并分析了它们的功率和一次能源消耗,以确定实际使用的能量。在基线条件下,与使用透明玻璃双层窗相比,使用BIPV模型时,加热和冷却负荷降低了18.2%。此外,温度设置的增加和来自入口的空气渗透对减少加热和冷却负荷有负面影响,这表明如果在建筑物中安装a-Si BIPV窗户,则需要对这些功能进行强化管理。

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