高散热铝背板光伏组件的设计及其工作温度的研究

孙爱祥, 魏青竹, 姬明良, 陈进

太阳能学报 ›› 2024, Vol. 45 ›› Issue (3) : 549-554.

PDF(1829 KB)
欢迎访问《太阳能学报》官方网站,今天是
PDF(1829 KB)
太阳能学报 ›› 2024, Vol. 45 ›› Issue (3) : 549-554. DOI: 10.19912/j.0254-0096.tynxb.2022-1825

高散热铝背板光伏组件的设计及其工作温度的研究

  • 孙爱祥, 魏青竹, 姬明良, 陈进
作者信息 +

DESIGN OF PV MODULES WITH HIGH HEAT-DISSIPATION ALUMINUM BACKPLANE AND STUDY ON ITS OPERATING TEMPERATURE

  • Sun Aixiang, Wei Qingzhu, Ji Mingliang, Chen Jin
Author information +
文章历史 +

摘要

以铝板作为光伏组件的背板材料,从绝缘安全性角度进行组件设计,并对铝背板组件工作温度性能进行研究。结果表明,铝背板组件通过做整版隔离,组件绝缘性能满足IEC 61215-2021标准,且散热性优异,实验结果与理论模拟匹配。

Abstract

In the paper, the aluminum sheet is adopted as the back sheet material of PV modules. And the aluminum backplane modules are designed from the view of insulation safety, and the operating temperature. The results showed that the aluminum backplane modules have an insulation performance that meets the standard IEC61215-2021 after undergoing whole sheet isolation. With the remarkable heat dissipation performance of aluminum sheets, the experimental results are in good accordance with the theoretical simulation.

关键词

铝板 / 光伏组件 / 绝缘 / 散热 / 背板材料

Key words

aluminum sheet / PV modules / insulation / heat dissipation / backsheet material

引用本文

导出引用
孙爱祥, 魏青竹, 姬明良, 陈进. 高散热铝背板光伏组件的设计及其工作温度的研究[J]. 太阳能学报. 2024, 45(3): 549-554 https://doi.org/10.19912/j.0254-0096.tynxb.2022-1825
Sun Aixiang, Wei Qingzhu, Ji Mingliang, Chen Jin. DESIGN OF PV MODULES WITH HIGH HEAT-DISSIPATION ALUMINUM BACKPLANE AND STUDY ON ITS OPERATING TEMPERATURE[J]. Acta Energiae Solaris Sinica. 2024, 45(3): 549-554 https://doi.org/10.19912/j.0254-0096.tynxb.2022-1825
中图分类号: TK519   

参考文献

[1] EL MAYS A, AMMAR R, HAWA M, et al.Improving photovoltaic panel using finned plate of aluminum[J]. Energy procedia, 2017, 119: 812-817.
[2] SOFIJAN A, NAWAWI Z, SUPRAPTO B Y, et al.Passive cooling using perforated aluminum plate to improve efficiency on monocrystalline of 100 Wp photovoltaic[J]. IOP conference series: materials science and engineering, 2020, 909(1): 012006.
[3] OH J, RAMMOHAN B, PAVGI A, et al.Reduction of PV module temperature using thermally conductive backsheets[J]. IEEE journal of photovoltaics, 2018, 8(5): 1160-1167.
[4] KIM N, KIM D, KANG H J, et al.Improved heat dissipation in a crystalline silicon PV module for better performance by using a highly thermal conducting backsheet[J]. Energy, 2016, 113: 515-520.
[5] ZHOU J C, ZHANG Z, LIU H J, et al.Temperature distribution and back sheet role of polycrystalline silicon photovoltaic modules[J]. Applied thermal engineering, 2017, 111: 1296-1303.
[6] 刘升, 张宇, 白建波. 光伏阵列运行过程中温度及功率特性研究[J]. 计算机仿真, 2014, 31(9): 156-160.
LIU S, ZHANG Y, BAI J B.The thermal and power characteristics of PV array under operation condition[J]. Computer simulation, 2014, 31(9): 156-160.
[7] 笪云. 表面微结构与载流子复合对太阳能光电转换的影响机制研究[D]. 南京: 南京理工大学, 2018.
DA Y.Effects of microstructured surface and carrier recombination on the influence mechanisms of solar optoelectronic conversion[D]. Nanjing: Nanjing University of Science and Technology, 2018.
[8] 翟涵. 太阳能电池光电转化过程中的温度效应研究[D]. 南京: 南京理工大学, 2021.
ZHAI H.Study on the temperature effect in photovoltaic conversion process of solar cells[D]. Nanjing: Nanjing University of Science and Technology, 2021.
[9] 梁振南, 秦红, 沈辉. 背板材料对太阳电池效率影响的实验研究[J]. 材料研究与应用, 2008, 2(4): 432-436.
LIANG Z N, QIN H, SHEN H.The experimental study on backplane material influencing the efficiency of solar cell[J]. Materials research and application, 2008, 2(4): 432-436.
[10] 王教方, 岳贤军, 宋淑珍, 等. 多层复合材料导热系数测定方法的研究[J]. 山东建材学院学报, 2000, 14(3): 258-260.
WANG J F, YUE X J, SONG S Z, et al.The research of determine method for the thermal conductivity of many multiple matreials[J]. Journal of Shandong Institute of Building Materials, 2000, 14(3): 258-260.
[11] 中国科学院上海硅酸盐研究所电化学涂层组. 铝及铝合金阳极氧化电绝缘涂层的研制[J]. 无机材料学报, 1977(1): 66-70.
Electrochemical Coating Group of Shanghai Silicate Research Institute, Chinese Academy of Sciences. Development of anodic oxidation electrical insulation coating for aluminum and its alloy[J]. Journal of inorganic materials, 1977(1): 66-70.
[12] 戴协. 聚对二甲苯涂层及其低工作温度晶硅光伏组件上的应用研究[D]. 上海: 东华大学, 2015.
DAI X.Study of parylene coating and its application on low working temperature crystalline silicon PV modules[D]. Shanghai: Donghua University, 2015.

基金

面向绿色低碳建筑的高可靠低成本光伏组件关键技术研究(CE20220002)

PDF(1829 KB)

Accesses

Citation

Detail

段落导航
相关文章

/