希腊浮动太阳能光伏系统与水电站的集成

John Vourdoubas
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摘要

水体漂浮太阳能光伏发电是近十年来发展迅速的一种新型清洁能源技术。目前的工作是调查在希腊现有的水力发电厂安装浮动光伏系统的可能性和潜力。到目前为止,与在希腊水库中使用浮动光伏有关的研究是有限的。希腊现有的24座水电站的特点已被用于估计可安装在其水库中的太阳能光伏系统。据发现,这些太阳能系统的标称功率可以安装在水库中,覆盖其10%的水面,为3861兆瓦,而年发电量为5212.35吉瓦时,相当于该国年电力需求的10.04%。太阳能水电一体化发电系统容量系数提高20%以上。研究表明,希腊现有的水电站可以在其大坝中安装浮动光伏系统,产生大量的绿色电力,同时也带来许多环境效益。这些新型太阳能系统可以与其他良性能源技术一起,为实现国家和欧盟到2050年实现净零碳排放的目标做出贡献。
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Integration of Floating Solar Photovoltaic Systems with Hydropower Plants in Greece
Floating solar photovoltaics in water bodies is a novel clean energy technology which has been developed rapidly during the last decade. The current work investigates the possibility and the potential of installing floating photovoltaic systems in the existing hydropower plants in Greece. Studies related with the use of floating photovoltaics in water reservoirs in Greece are limited so far. The characteristics of the existing 24 hydropower plants in Greece have been used for the estimation of the solar photovoltaic systems which can be installed in their water reservoirs. It has been found that the nominal power of these solar energy systems which can be installed in their water reservoirs, covering 10% of their water surface, is at 3,861 MWp while the annual generated electricity at 5,212.35 GWh corresponding at 10.04 % of the annual electricity demand in the country. The capacity factor of the integrated solar and hydro power systems is increased by more than 20%. The research indicates that the existing hydropower plants in Greece can host, in their water dams, floating photovoltaic systems generating significant amounts of green electricity while they also result in many environmental benefits. These novel solar energy systems can contribute, together with other benign energy technologies, in the achievement of the national and EU target for net zero carbon emissions by 2050.
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