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三结太阳电池栅线对激光辐照中的传热影响研究
引用本文:周广龙,徐建明,陆健,李广济,张宏超.三结太阳电池栅线对激光辐照中的传热影响研究[J].红外与激光工程,2018,47(12):1220001-1220001(5).
作者姓名:周广龙  徐建明  陆健  李广济  张宏超
作者单位:1.南京理工大学 理学院,江苏 南京 210094;
基金项目:上海航天科技创新基金(SAST20161113)
摘    要:为了研究三结太阳电池表面的栅线在1 070 nm连续激光辐照过程中的传热影响机制,文中通过激光辐照过程中三结太阳电池实时的电致发光现象分析三结太阳电池的损伤情况,并建立三维锗基太阳电池模型,借助有限元分析软件COMSOL对连续激光辐照锗基太阳电池的温度分布进行仿真。结果表明:在连续激光功率密度为72.5 W/cm2、辐照时间为41 s时,三结太阳电池的顶电池出现轻微损伤,损伤区域首先沿着栅线分布。在锗基太阳电池的仿真模型中,电池的温度升高至1 318 K,栅线引起了三结太阳电池热量传递方向的各项异性,沿着栅线具有更高的热传导速率。仿真结果能够对实验现象给予合理的解释。

关 键 词:连续激光    三结太阳电池    栅线    热效应
收稿时间:2018-07-05

Heat transfer influence on grid lines of triple-junction solar cell irradiated by laser
Institution:1.College of Science,Nanjing University of Science and Technology,Nanjing 210094,China;2.Shanghai Institute of Space Power-Sources,Shanghai 200245,China
Abstract:Effects of heat transfer on grid lines of triple-junction solar cell irradiated by 1 070 nm CW laser were studied through the damage on triple-junction solar cell irradiated by laser with electroluminescence test. Three-dimensional model based on germanium solar cell was constructed with finite element analysis software COMSOL to simulate temperature distribution on triple-junction solar cell irradiated by CW laser. The results indicate that the top-cell of triple-junction solar cell is slightly damaged at the laser power density 72.5 W/cm2 and continuous irradiation time 41 s and the damaged region is firstly distributed along the grid line. The temperature of germanium solar cell in the simulation model has increased to 1 318 K and the grid lines which has high heat conduction rate result in the anisotropic heat transfer direction. The experimental results are well explained by the simulation model.
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