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Influence of allocation methods on the LC-CO2 emission of an agrivoltaic system

机译:分配方法对农业系统LC-CO2排放的影响

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摘要

Agrivoltaic systems are multi-output systems where both solar power and crops are produced on the same land. Unlike other land-based photovoltaics (PV), the agrivoltaic PV modules are ground mounted between crops at some height with a certain tilt. Alternatively, PV modules replace part of a greenhouse or are partially set either below or above a covering material. The system could become an important mitigation option for climate change. However, power generation by PV reduces sunlight transmittance and therefore reduces agricultural yield. An allocation method that will address the potential interference of PV with crops is required for life cycle assessment (LCA) to evaluate greenhouse gas mitigation. This study aims to develop a new allocation method (i.e., solar allocation) and compare the LCA results of the new and traditional allocation methods (i.e., system expansion and economic allocation). The partition rate of the solar allocation is derived from the ratio of the active area covered by PV to the greenhouse surface area and light transmittance. These methods were applied to an agrivoltaic tomato production system using protected horticulture with the introduction of organic photovoltaics as a case-study of a system in Japan.
机译:Agrivoltaic Systems是在同一块土地上产生太阳能和作物的多输出系统。与其他基于陆基光伏(PV)不同,Agrivoltaic PV模块在庄稼之间安装在一些高度的作物之间,具有一定的倾斜。或者,PV模块替换温室的一部分或部分地设定在覆盖材料以下或之上。该系统可能成为气候变化的重要缓解选择。然而,PV的发电减少了阳光透射率,从而降低了农业产量。生命周期评估(LCA)需要将解决PV与作物潜在干扰的分配方法,以评估温室气体缓解。本研究旨在开发新的分配方法(即,太阳能分配),并比较新的和传统分配方法的LCA结果(即系统扩张和经济分配)。太阳能分配的分区率来自PV覆盖的有源区与温室表面积和透光率的比率。使用受保护的园艺应用这些方法,以引入有机光伏作为日本系统的案例研究。

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