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Innovative floating bifacial photovoltaic solutions for inland water areas

机译:用于内陆水域的创新漂浮式双面光伏解决方案

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Photovoltaic (PV) technology has the potential to be integrated on many surfaces in various environments, even on water. Modeling, design, and realization of a floating PV system have more challenges than conventional rooftop or freestanding PV system. In this work, we introduce two innovative concepts for floating bifacial PV systems, describing their modeling, design, and performance monitoring. The developed concepts are retractable and enable maximum energy production through tracking the Sun. Various floating PV systems (monofacial, bifacial with and without reflectors) with different tilts and tracking capabilities are installed on a Dutch pond and are being monitored. Results of the thermal study showed that partially soaking the frame of PV modules into water does not bring a considerable additional yield (+0.17) and revealed that floating PV modules experience higher temperature special variance compared with land-based systems. Observations showed that the birds' presence has a severe effect on floating PV performance in the short term. Electrical yield investigation concluded that due to low albedo of inland water areas (~6.5), bifacial PV systems must have reflectors. One-year monitoring showed that a bifacial PV system with reflector and horizontal tracking delivers ~17.3 more specific yield (up to 29 in a clear-sky month) compared with a monofacial PV system installed on land. Ecological monitoring showed no discernable impacts on the water quality in weekly samplings but did show significant impacts on the aquatic plant biomass and periods of low oxygen concentrations.
机译:光伏 (PV) 技术有可能集成到各种环境中的许多表面上,甚至在水上。与传统的屋顶或独立式光伏系统相比,漂浮光伏系统的建模、设计和实现面临更多挑战。在这项工作中,我们介绍了漂浮式双面光伏系统的两个创新概念,描述了它们的建模、设计和性能监控。开发的概念是可伸缩的,通过跟踪太阳实现最大的能量产生。 具有不同倾斜度和跟踪能力的各种漂浮光伏系统(单面、带和不带反射器的双面)安装在荷兰池塘上,并正在接受监测。热研究结果表明,将光伏组件的框架部分浸泡在水中不会带来可观的额外产量(+0.17%),并表明与陆基系统相比,漂浮式光伏组件经历了更高的温度特殊变化。观察结果表明,鸟类的存在在短期内对漂浮光伏性能有严重影响。发电量调查得出的结论是,由于内陆水域的反照率较低(~6.5%),双面光伏系统必须具有反射器。一年的监测表明,与安装在陆地上的单面光伏系统相比,带有反射器和水平跟踪的双面光伏系统比发电量高出~17.3%(在晴空月份高达29%)。生态监测显示,每周采样对水质没有明显影响,但对水生植物生物量和低氧浓度时期有显著影响。

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