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跟踪式和固定倾斜式光伏系统中的特定位置光谱和热效应

Location-Specific Spectral and Thermal Effects in Tracking and Fixed Tilt Photovoltaic Systems.

作者信息

Ripalda José M, Chemisana Daniel, Llorens José M, García Iván

机构信息

Instituto de Micro y Nanotecnología - CSIC, Isaac Newton, 8, E-28760, Tres Cantos, Madrid, Spain.

Applied Physics Section of the Environmental Sci. Department, Universitat de Lleida, Jaume II 69, 25001 Lleida, Spain.

出版信息

iScience. 2020 Oct 1;23(10):101634. doi: 10.1016/j.isci.2020.101634. eCollection 2020 Oct 23.

Abstract

The efficiency of photovoltaic modules in the field is generally lower than the efficiency under standard testing conditions due to temperature and spectral effects. Using the latest spectral dataset available from the National Solar Radiation Database, we report spectral correction factors ranging from -2% to 1.3% of the produced energy for silicon modules depending on location and collector geometry. We find that spectral effects favor trackers if silicon modules are used, but favor a fixed tilt instead if perovskites or CdTe are used. In high-irradiance locations, the energy yield advantage of silicon-based trackers is underestimated by 0.4% if spectral sensitivity effects are neglected. As the photovoltaic market grows to a multi-terawatt size, these seemingly small effects are expected to have an economic impact equivalent to tens of billions of dollars in the next few decades, far outweighting the cost of the required research effort.

摘要

由于温度和光谱效应,光伏组件在实际应用中的效率通常低于标准测试条件下的效率。利用国家太阳能辐射数据库提供的最新光谱数据集,我们报告了根据位置和集热器几何形状,硅组件产生能量的光谱校正因子在-2%至1.3%之间。我们发现,如果使用硅组件,光谱效应有利于跟踪器,但如果使用钙钛矿或碲化镉,则有利于固定倾角。在高辐照度地区,如果忽略光谱灵敏度效应,基于硅的跟踪器的能量产量优势会被低估0.4%。随着光伏市场发展到数太瓦规模,预计在未来几十年里,这些看似微小的效应将产生相当于数千亿美元的经济影响,远远超过所需研究工作的成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4863/7569229/0d82b84603ac/fx1.jpg

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