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光伏发电技术
★ 5.0
透明度对低光照条件下草莓农光系统影响的实验研究
Experimental impacts of transparency on strawberry agrivoltaics using thin film photovoltaic modules under low light conditions
语言:
中文摘要
摘要 本研究通过在薄膜碲化镉光伏(Cd-Te PV)模块下开展草莓种植试验,探究不同农光系统光照条件对草莓生长和产量的影响。研究旨在评估在Cd-Te光伏模块下,不同光伏透明度对草莓产量和生长的影响,并评价农光系统作为北方气候区草莓生产的可持续解决方案的潜力。试验设置了七个透明度水平(10%、30%、40%、50%、60%、70%和80%),导致不同类型光伏模块下的光合有效辐射(PAR)值各不相同。试验在受控环境中进行,模拟加拿大安大略省伦敦市的户外环境条件,并对温度和光照进行调控。测定指标包括草莓鲜重、植株高度、叶片数和花芽数量。结果表明,在70%透明度光伏模块下种植的草莓鲜重达到对照组平均值的140.6%。此外,40%透明度条件下产量仍保持在80%以上,表明其在所有设有农光系统产量要求的地区均具备应用可行性。光伏模块透明度的增加与叶片数量的增多呈正相关,而与植株高度的相关性则较为复杂。若加拿大所有草莓农场均转为农光系统模式,每年可产生595至1,786吉瓦时(GWh)的太阳能电力;在全球范围内,草莓农光系统的发电潜力可达58至173太瓦时(TWh)。在草莓产业中推广农光系统,有望实现能源自给自足,并使该产业转变为净电力输出部门,为农户创造额外收入。
English Abstract
Abstract This study determines the effects of varying lighting conditions from agrivoltaics on strawberry growth and yield by investigating strawberry production under thin-film cadmium telluride PV modules. The goal of this study was to assess the impact of varying PV transparency on strawberry yield and growth under Cd-Te PV modules, and to evaluate the potential of agrivoltaics as a sustainable solution for strawberry production in northern climates. Seven levels of transparency (10%, 30%, 40%, 50%, 60%, 70%, and 80%) were tested, which resulted in varying photosynthetically active radiation (PAR) values under each PV module type. Modules were tested in a controlled environment designed to replicate outdoor conditions of London Ontario, with regulated temperature and lighting. Strawberry fresh weight, plant height, leaf count, and flower count were quantified. The results indicate that strawberries grown under 70% transparency PV exhibited a fresh weight 140.6% of the average control. Additionally, 40% transparency maintained a greater than 80% yield making them viable in all regions with agrivoltaics yield mandates. Increased transparency in PV modules also correlated with a higher number of leaves, while height correlation was complex. If Canadian strawberry farms converted to agrivoltaics, between 595 and 1,786 GWh of solar electricity could be generated and globally strawberry agrivoltaics offer an electrical potential ranging from 58 to 173 TWh. The adoption of agrivoltaics in the strawberry sector could facilitate energy self-sufficiency and transform it into a net electricity exporter, generating additional revenue for farmers.
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SunView 深度解读
该农光互补草莓种植研究对阳光电源SG系列光伏逆变器在农业场景应用具有重要参考价值。研究表明70%透光率组件可使草莓产量达140.6%,40%透光率仍保持80%以上产量,验证了农光互补的可行性。阳光电源可针对此类应用优化MPPT算法以适应薄膜组件的弱光特性,结合iSolarCloud平台实现光照与作物生长数据联动监测。全球草莓农光互补潜力达58-173TWh,为SG逆变器在农业光伏领域开拓了广阔市场空间,可配套储能系统实现农场能源自给并向电网反送电力,为农户创造双重收益。