飞行状态参数对太阳能飞机光伏组件性能的影响

Saydul Morshed Tanvir, Xiao Wenbo, Jin Xin
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引用次数: 0

摘要

基于光伏组件发电模型,研究了太阳能飞机飞行速度、飞行高度、飞行时间和飞行面积对光伏组件性能的影响。随着飞行速度的增加,模块产生的功率增加,但趋于饱和。当光伏组件的转换效率提高时,太阳能飞机所需的功率和光伏组件产生的功率在更快的飞行速度下得到平衡。模块产生的功率随着飞行高度的增加而增加,但由于空气温度和模块表面温度的下降而趋于饱和。海拔越高,大气密度越小,大气渗透率越小,太阳辐射强度越大,模块产生的功率越大。组件产生的功率在中午最强。电池的性能在夏季最强,冬季最弱,因为组件的性能主要取决于太阳辐射的强度。最后,对太阳能飞机的能量分布和长时间空间飞行进行了讨论。[j] .科学通报,2004 (1);73-83: 2021年6月
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of flight state parameters on the performance of photovoltaic modules in solar aircraft
Based on the power generation model of photovoltaic modules, the effects of flight speed, altitude, time and area in solar aircraft on the performance of photovoltaic modules have been studied. As the flight speed increases, the power generated by the module increases but tends to saturate. When the conversion efficiency of photovoltaic modules is improved, the required power of the solar aircraft and the power generated by the photovoltaic modules are balanced at a faster flight speed. The power generated by the modules increases with the flight altitude but tends to saturate due to the drop of air temperature and the surface temperature of the module. The higher the altitude, the smaller is the atmospheric density, and atmospheric permeability, and the greater is the solar radiation intensity, and thus the power generated by the module increases. The power generated by the components is the strongest at noon. Battery performance is the strongest in summer and the weakest in winter, as the module’s performance is mainly determined by the intensity of solar radiation. Finally, the energy distribution of solar aircraft and long-time space flight has been discussed. J. Bangladesh Acad. Sci. 45(1); 73-83: June 2021
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