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Improving the energy production of roof-top solar PV systems through roof design

机译:通过屋顶设计改善屋顶太阳能光伏系统的能源生产

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Australia is receiving an average of 58 million PJ of solar radiation per year, which is about 1000 times larger than its total energy generation. Roof-top solar photovoltaic (PV) systems alone can supply a phenomenal fraction of the nation's total energy. The architectural design and orientation of roofs have considerable impacts on the energy efficiency of roof-top solar PV systems. These aspects, however, have received scant academic attention within the literature. To address this knowledge gap, this research seeks to increase the energy production of roof-top solar PV systems through roof design. The energy generation of roof-top solar PV systems is modelled using Helioscope software, and then validated using real-time monitored data. Based on the verified model, the impact of different tilt angles and shading from surrounding obstructions upon energy generation are analyzed in detail. To ground the research in practical terms, the aesthetic design of five typical roof design patterns (including flat, shed, gable, hip, and butterfly roof) are explored to compare the energy generated from solar PV systems fitted to each design. Findings indicate that: (1) the simulated energy generation from the solar PV system is close to the monitored data, with equal annual generation; (2) the shading of surrounding obstructions can reduce the energy generation of roof-top solar PV systems considerably, where up to 24% energy loss is reported; (3) the optimal tilt angle is about 35 degrees, which is close to the latitude angle of the studied location; and (4) the shed roof design provides the maximum potential for solar energy generation when compared to that of other roof design patterns. The energy generation variation of other aesthetic roof patterns is also presented, providing support for informed decision making on the roof design. This study contributes to the field through improving the energy production of roof-top solar PV systems based on roof design along with considering aesthetic concerns. Novel insights generated will be beneficial for researchers and government policy makers alike; the work also introduces simulation-based methodological approaches for practitioners who seek to improve the energy generation of roof-top solar PV systems.
机译:澳大利亚每年接收平均每年5800万PJ的太阳辐射,比其总能源大约1000倍。单独的屋顶太阳能光伏(PV)系统可以提供全国总能量的现象。屋顶的建筑设计和方向对屋顶太阳能光伏系统的能源效率具有相当大的影响。然而,这些方面在文献中获得了少数的学术关注。为了解决这一知识差距,该研究旨在通过屋顶设计提高屋顶太阳能光伏系统的能源生产。屋顶太阳能光伏系统的能量产生使用过热镜软件建模,然后使用实时监控数据进行验证。基于已验证的模型,详细分析了不同倾斜角度与周围障碍物遮蔽的影响。为实际实现研究,探讨了五种典型屋顶设计图案的审美设计(包括平,棚,山墙,臀部和蝶形屋顶),以比较从适合每个设计的太阳能光伏系统产生的能量。调查结果表明:(1)来自太阳能光伏系统的模拟能量靠近受监控数据,年代等等; (2)周围障碍物的阴影可显着降低屋顶太阳能光伏系统的能量产生,其中报道了高达24%的能量损失; (3)最佳倾斜角度约为35度,接近所研究的位置的纬度角度; (4)与其他屋顶设计模式相比,棚屋屋顶设计提供了太阳能发电的最大电位。还提出了其他美学屋顶图案的能量产生变化,为屋顶设计提供了对知识决策的支持。本研究通过提高基于屋顶设计的屋顶太阳能光伏系统的能量生产以及考虑到审美问题来提高屋顶太阳能光伏系统的能源生产。产生的新颖洞察力将有利于研究人员和政府政策制定者;该工作还介绍了寻求改善屋顶太阳能光伏系统能源发电的从业者的模拟的方法论方法。

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