炎热干旱气候下光伏与遮阳系统集成对建筑能耗优化的影响评价(以设拉子某办公楼为例)

L. Jafari, Seyedehmamak Salavatian
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引用次数: 0

摘要

光伏综合遮阳系统是多功能组件,可以发电,同时为建筑表面和墙壁提供所需的遮阳。将集成光伏系统应用于建筑组件,包括固定遮阳,除了调节阳光的穿透和节约能源外,似乎是一种功能齐全的方法,因为它产生了部分建筑物的能源。因此,为了评估光伏综合遮阳系统的性能,在优化能源消耗方面,有必要研究光伏综合遮阳系统对设拉子地区能源的影响。因此,使用DesignBuilder仿真程序和PVsyst计算了办公空间立面的15个光伏集成遮阳系统场景。结果表明,采用4个斜角为45度、方位角为0度(朝南)百叶的光伏综合遮阳系统效率最高,为35.54%,降低幅度可接受。该供热系统在发电和控制太阳辐射的同时发挥了重要的作用。本研究为光伏集成遮阳系统的参数提供了必要的信息,为光伏技术在设计步骤中与建筑构件集成的发展铺平了道路。
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Evaluation of photovoltaic performance integrated with shading system in optimizing building energy consumption in hot arid climates (Case study: an office building in Shiraz)
Photovoltaic-integrated Shading systems, are multifunctional components to generate electricity and simultaneously provide the shade needed for building surfaces and walls. Applying integrated photovoltaic systems with building components, including fixed shadings, in addition to regulating the penetration of sunlight and saving energy, seems to be a fully functional approach due to the production of part of the buildings' energy. Therefore, to evaluate the performance of Photovoltaic-integrated Shading systems, in optimizing energy consumption, the need to study the effect of Photovoltaic-integrated Shading systems, on energy in Shiraz was considered. Therefore, 15 Photovoltaic-integrated Shading systems scenarios for the facade of an office space model were calculated using the DesignBuilder simulation program and PVsyst. According to the results, the Photovoltaic-integrated Shading systems, designed with 4 louvers with a slope angle of 45 degrees and zero degrees azimuth (facing south) has the highest efficiency compared to other scenarios and shows an energy efficiency of 35.54%, which indicates an acceptable decrease. The heating energy has been effective as well as its efficiency as a combined photovoltaic system in producing energy and controlling solar radiation simultaneously. The present study provides the required information on the parameters of Photovoltaic-integrated Shading systems and paves the way for the development of photovoltaic technology integrated with building components in the design steps.
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