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Influence of Shading on a BIPV System’s Performance in an Urban Context: Case Study of BIPV Systems of the Science Center of Complexity Building of the National and Autonomous University of Mexico in Mexico City

机译:城市环境中遮阳对BIPV系统性能的影响:墨西哥国立墨西哥自治大学复杂建筑科学中心的BIPV系统案例研究

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The purpose of this paper is to establish the influence of shading on a Building Integrated Photovoltaic (BIPV) system´s performance in an urban context. The PV systems of the Science Center of Complexity (Centro de Ciencias de la Complejidad) Building based in the Main Campus of the National and Autonomous University of Mexico (UNAM) in Mexico City was taken as case study.  The PV systems are placed on the rooftop and on the south façade of the building.  The south-façade PV system, operating as sunshades, consists of two strings:  one at the ground floor and the other one at the first floor.  According to the building’s facility manager, the south-façade PV system generates 42% less electricity per kilowatt peak (kWp) installed than the one on the roof.  The methods applied in this study were Solar Radiation Analysis (SRA) simulations performed with the Insight 360 Plug-in from Revit 2018® and an on-site measurement using specialized tools.  The results of the SRA simulations showed that the shading casted by the PV system placed on the first floor on top of the PV system of the ground floor decreases its solar incident radiation over 50%.  The simulation outcome was compared and validated to the measured data obtained from the on-site measurement.  In conclusion, the loss factor achieved from the shading of the PVs is due to the surroundings and the PV system´s own design.  The south-façade BIPV system’s deficient design generates critical losses on its performance and decreases its profitability.
机译:本文的目的是确定在城市环境下遮阳对建筑集成光伏(BIPV)系统性能的影响。以位于墨西哥城的墨西哥国立和自治大学(UNAM)主校区的复杂性科学中心大楼(Centro de Ciencias de la Complejidad)的光伏系统为例。光伏系统放置在建筑物的屋顶和南立面上。用作遮阳棚的南立面光伏系统由两根弦组成:一根位于底层,另一根位于一楼。据该建筑物的设施经理说,南立面的光伏系统每安装一千瓦峰值(kWp)所产生的电力比屋顶上的每千瓦峰值低42%。本研究中使用的方法是使用Revit2018®的Insight 360插件进行的太阳辐射分析(SRA)模拟以及使用专用工具进行的现场测量。 SRA模拟的结果表明,位于一楼PV系统顶部的一楼PV系统投下的阴影将其太阳入射辐射降低了50%以上。对模拟结果进行了比较,并验证了从现场测量获得的测量数据。总而言之,从PV阴影获得的损耗因子是由于周围环境和PV系统自己的设计所致。南部外墙BIPV系统的设计不足会对其性能造成重大损失,并降低其盈利能力。

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