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Photovoltaic systems with vertically mounted bifacial PV modules in combination with green roofs

机译:具有垂直安装的双面光伏模块和绿色屋顶的光伏系统

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Dependent on the specific conditions flat roofs can be well suited for the installation of large photovoltaic systems in urban areas. For urban designers also other aspects, such as the insulation of buildings, cooling, air purification and water retention play an important role besides the ecological energy generation. The combination of photovoltaics and roof greening can therefore be an interesting fusion. It combines the advantages of a green roof with the local electrical energy production at the place of consumption.However, using a conventional photovoltaic system with tilted modules in south or east-west direction on a green roof causes problems, as typical low tilt angels and high ground coverage rates result in an almost complete coverage of the roof surface. Plants, growing in between the covered areas provoke undesirable shading of the collector surface. Only a frequent maintenance procedure, complicated by dense PV system layouts, can avoid a reduction of the energy yield in the course of time.Vertically mounted specially designed bifacial modules are an option to realize photovoltaic power generation in combination with a functional green roof at low maintenance costs. In this paper, we report on the layout and the energy yield of a corresponding system. Custom-made bifacial modules with 20 cells were produced and vertically installed in landscape orientation. The narrow layout of the modules lowers the wind load and reduces the visibility. The enhanced power in the morning and evening of vertically east-west installed modules can additionally lead to higher self-consumptions rates.Despite having some shading and undergrounds with albedo factors of less than 0.2, the bifacial installation with a rated power of 9.09 kWp achieved a specific yield of the 942 kWh/kWp in one year (11.08.2017-10.08.2018). This is close to typical values of 1000 kWh/kWp achieved for south-facing PV systems in the same region.The impact of the greening on the albedo and the system performance is investigated in more detail with two smaller sub-systems. The energy yields of the two bifacial sub-systems are compared to a monofacial, south facing reference module. The use of silver-leaved plants in this system resulted in higher albedo values and a more resilient roof greening.
机译:根据特定条件,平屋顶非常适合在城市地区安装大型光伏系统。对于城市设计师来说,除生态能源产生外,其他方面,例如建筑物的隔热,冷却,空气净化和保水也起着重要作用。光伏和屋顶绿化的结合因此可以成为有趣的融合。它结合了绿色屋顶的优点和在消费地点产生的本地电能。但是,在绿色屋顶上使用传统的光伏系统,该光伏系统在南或东西方向上具有倾斜的模块,会产生问题,例如典型的低倾斜角度和高的地面覆盖率导致屋顶表面几乎完全覆盖。在覆盖区域之间生长的植物引起收集器表面的阴影。只有频繁的维护程序,再加上密集的光伏系统布局,才能避免随着时间的流逝降低能源产量。垂直安装的专门设计的双面模块是实现光伏发电与功能低廉的绿色屋顶相结合的一种选择维修费用。在本文中,我们报告了相应系统的布局和能量产出。生产了具有20个单元的定制双面模块,并以横向方向垂直安装。模块的狭窄布局降低了风负荷并降低了能见度。东西向垂直安装的模块在早晚增加的功率可导致更高的自耗率。尽管阴影和地下的反照率系数小于0.2,但双面安装的额定功率却达到9.09 kWp一年内的942 kWh / kWp的特定发电量(11.08.2017-10.08.2018)。这接近于同一地区朝南的光伏系统获得的1000 kWh / kWp的典型值。在两个较小的子系统中,更详细地研究了绿化对反照率和系统性能的影响。将两个双面子系统的能量产量与单面朝南参考模块进行比较。在该系统中使用银叶植物可产生更高的反照率值和更富弹性的屋顶绿化。

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