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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Combining food and energy production: Design of an agrivoltaic system applied in arable and vegetable farming in Germany
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Combining food and energy production: Design of an agrivoltaic system applied in arable and vegetable farming in Germany

机译:结合食品和能源生产:德国耕种蔬菜农业应用的农业系统设计

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摘要

Combining agriculture and photovoltaics on the same land area gains in attention and political support in a growing number of countries accompanied by notable research activities in France, USA and Korea, amongst others. This study assesses the technical feasibility of agrivoltaic (APV), while it gives insights on how to design an APV system. Furthermore, it analyses the electrical yield and the behavior and productivity of four crops grown in Germany's largest agrivoltaic research facility installed in 2016 near Lake Constance within the research project APV-RESOLA by Fraunhofer Institute for Solar Energy Systems ISE. The German design differs from most other agrivoltaic approaches by allowing for a wide range of machine employment, facilitated by a vertical clearance of 5 m and a width clearance of up to 19 m. Crops cultivated under the APV system and on the reference field under a crop rotation scheme include potato, celeriac, clover grass and winter wheat.The land use efficiency measured by the Land Equivalent Ratio (LER) indicated a rise between 56% and 70% in 2017 while the dry and hot summer in 2018 demonstrated that the agrivoltaic system could increase land productivity by nearly 90%. Radiation simulations showed that deviating from full south by around 30 degrees resulted in equal distribution of radiation on ground level, representing the basis for the agrivoltaic design. Considering climate change and increasing land scarcity, our overall results suggest a high potential of agrivoltaics as a viable and efficient technology to address major challenges of the 21rst century.
机译:在越来越多的国家在越来越多的国家的关注和政治支持中结合了农业和光伏,伴随着法国,美国和韩国的显着研究活动。本研究评估了Agrivoltaic(APV)的技术可行性,同时它提供了有关如何设计APV系统的见解。此外,它分析了德国最大的Agrivoltaic研究设施在2016年安装的四种作物的电源和行为和生产率,并在研究项目APV-resola湖康斯坦斯湖附近,由Fraunhofer Soluts Systems ISE。德国设计通过允许各种机器就业,通过垂直间隙5米的垂直间隙,宽度清除,德国的设计与大多数其他农作方法不同。在APV系统和作物旋转方案下栽培的作物包括马铃薯,Celeriac,三叶草和冬小麦。通过土地等同比(LER)测量的土地利用效率表示增长56%和70% 2017年,虽然2018年的干燥和炎热的夏季表明,Agrivoltaic系统可以将土地生产率提高近90%。辐射模拟表明,从全南偏离30度,导致地面辐射的平等分布,代表了Agrivoltaic设计的基础。考虑到气候变化和土地稀缺的增加,我们的整体成果表明Agrivoltaics的高潜力是一种可行和高效的技术,可以解决21世纪的主要挑战。

著录项

  • 来源
    《Renewable & Sustainable Energy Reviews》 |2021年第4期|110694.1-110694.13|共13页
  • 作者单位

    Fraunhofer Inst Solar Energy Syst ISE Dept Photovolta Modules & Power Plants Heidenhofstr 2 D-79110 Freiburg Germany|Univ Freiburg Dept Econ Wilhelmstr 1b D-79085 Freiburg Germany;

    Fraunhofer Inst Solar Energy Syst ISE Dept Photovolta Modules & Power Plants Heidenhofstr 2 D-79110 Freiburg Germany;

    Fraunhofer Inst Solar Energy Syst ISE Dept Photovolta Modules & Power Plants Heidenhofstr 2 D-79110 Freiburg Germany;

    BayWa Re Solar Projects Kaiser Joseph Str 263 D-79098 Freiburg Germany;

    Fraunhofer Inst Solar Energy Syst ISE Grp Appl Storage Syst Elect Energy Storage Div Heidenhofstr 2 D-79110 Freiburg Germany;

    Univ Hohenheim Inst Landscape & Plant Ecol August von Hartmann Str 3 D-70599 Stuttgart Germany;

    Ctr Agr Technol Augustenberg Nesslerstr 23 D-76227 Karlsruhe Germany;

    Univ Hohenheim Inst Landscape & Plant Ecol August von Hartmann Str 3 D-70599 Stuttgart Germany;

    Fraunhofer Inst Solar Energy Syst ISE Dept Heat & Cold Storage Heidenhofstr 2 D-79110 Freiburg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agrophotovoltaics; Agrivoltaics; Solar sharing; Land use efficiency; Land productivity; Integrated food-energy system;

    机译:Agrophotovoltaics;Agrivoltaics;太阳能共享;土地利用效率;土地生产力;综合食品能源系统;

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