光伏电池与建筑遮阳设备的整合:

Nesreen Aboud
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摘要

这项研究的重点是中国探险学会行政大楼的热性能模拟。它建议在大楼南立面安装遮阳元件,以提高办公人员的热舒适度。这些遮阳元件结合了光伏电池,展示了在外部遮阳设备中利用光伏的潜力。这种方法的主要目的是有效解决内部温度过高和太阳辐射过强的问题。此外,它还能确保保留建筑围护结构的主要功能,如隔热、提供自然采光和防止内部热眩光。我们对安装遮阳设备的建筑和未安装遮阳设备的建筑进行了比较分析,重点是测量光伏电池板产生的总电能。为此使用了 SketchUp 和 EnergyPlus 等模拟程序。模拟结果表明,对朝南窗户进行战略性遮阳设计,可使每年传入建筑物的热量收益减少 17.15%。此外,光伏遮阳设备的集成表现出卓越的性能特点,为建筑提供了约 5916.388 兆瓦/小时的生产能力。这种整合有效地利用了太阳能,改善了建筑的室内环境。
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Integration of Photovoltaic Cells in Building Shading Devices:
This study focuses on the thermal performance simulation of the CSERS administrative building. It proposed the integration of shading elements on the south façade of the building to enhance thermal comfort for office occupants. These shading elements incorporate photovoltaic cells, displaying the potential of utilizing photovoltaic in external shading devices. The main objective of this approach is effectively address issues related to high internal temperatures and excessive solar radiation exposure. Furthermore, it ensures the preservation of key functions of the building envelope, such as thermal insulation, provision of natural lighting, and prevention of internal thermal glare. Comparative analysis is conducted between the building equipped with shading devices and the one without, with a focus on measuring the total electrical energy generated by the photovoltaic panels. Simulation programs such as SketchUp and EnergyPlus are utilized for this purpose. The results of the simulations reveal that strategically designed shading on south-facing windows leads to 17.15% reduction in annual heat gains transmitted to the building. In addition, the integration of photovoltaic shading devices demonstrates outstanding performance characteristics, contributing a productive capacity of around 5916.388 MW/h to the building. This integration effectively harnesses solar energy to improve the indoor environment of the building.
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