巴基斯坦屋顶光伏遮阳对建筑物净电能需求的影响

Muhammad Umar Maqbool, A. Butt, A. R. Bhatti, Y. A. Sheikh, M. Asif
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引用次数: 0

摘要

本研究使用屋顶结构模型和稳态热模拟,对屋顶光伏安装对建筑物净能源需求的影响进行了定量评估。为此,巴基斯坦费萨拉巴德通常使用的屋顶结构由于395瓦的商业屋顶光伏装置而具有和不具有遮阳效果。模拟参数包括光伏组件的尺寸、安装位置/角度与屋顶的尺寸和环境条件对空调系统热负荷的影响,以保持建筑顶层温度为25°C。7月白天,屋顶平均增加的热负荷由无光伏结构的150.87 BTU/h/m2减少到有光伏结构的118.16 BTU/h/m2。在平均环境温度为35.5°C、风速为2.75 m/s的情况下,7月份白天太阳和红外辐照度的最大值分别为792.2 W/m2和466 W/m2,能源需求减少了20.05%。本研究为建筑施工过程中屋面层结构的优化提供了有价值的数据,为后期光伏系统的安装提供了预测。还开发了技术/方法来减少由于光伏安装造成的建筑能源预算,这对建筑行业也是有价值的投入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Rooftop PV Shading on Net Electrical Energy Demand of Buildings in Pakistan
This work performs a quantitative assessment of the impact of rooftop PV installation on building’s net energy demand using model of roof structure and steady state thermal simulations. For this purpose, roof structure typically used in Faisalabad, Pakistan is modeled with and without the shading effect due to a 395 W commercial rooftop PV setup. The simulated parameters include the impact of PV module’s dimensions, mounting position/angle alongside roof size and ambient conditions on heat load of air-conditioning system to maintain a temperature of 25 °C within building’s top floor. During the daylight hours of July, the heat load added by the roof on average reduces from 150.87 BTU/h/m2 without PV to 118.16 BTU/h/m2 with PV structure. This 20.05% reduction in energy demand has been achieved with July’s maximum daytime solar and infrared irradiances of 792.2 W/m2 and 466 W/m2 recorded at an average ambient temperature of 35.5 °C and wind speed of 2.75 m/s. This study provides valuable data on optimization of roof layer structure during building’s construction in anticipation of PV system installation at a later stage. Also developed techniques/methods to reduce building’s energy budget due to PV installation, can be valuable input for construction industry as well.
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