Simple thermal-electrical model of photovoltaic panels with cooler-integrated sun tracker

Xuan Cuong Ngo, Thi Thuy Loan Huynh, Dinh Hoa Cuong Nguyen, Duy Thuan Nguyen, Vinh Thang Le, Thi Hong Nhung Nguyen
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Abstract

This paper presents a simple thermal-electrical model of a photovoltaic panel with a cooler-integrated sun tracker. Based on the model and obtained weather data, we analyzed the improved overall efficiency in a year as well as the performance in each typical weather case for photovoltaic panels with fixed-tilt systems with a tilt angle equal to latitude, fixed-tilt systems with cooler, a single-axis sun tracker, and a cooler-integrated single-axis sun tracker. The results show that on a sunny summer day with few clouds, the performance of the photovoltaic panels with the proposed system improved and reached 32.76% compared with the fixed-tilt systems. On a sunny day with clouds in the wet, rainy season, because of the low air temperature and the high wind speed, the photovoltaic panel temperature was lower than the cooler’s initial set temperature; the performance of the photovoltaic panel with the proposed system improved by 12.55% compared with the fixed-tilt system. Simulation results show that, over one year, the overall efficiency of the proposed system markedly improved by 16.35, 13.03, and 3.68% compared with the photovoltaic panel with the fixed-tilt system, the cooler, and the single-axis sun tracker, respectively. The simulation results can serve as a premise for future experimental models.
具有集成式太阳跟踪器的光伏板的简单热电模型
本文提出了一个简单的太阳能电池板的热电模型,该模型具有一个集成的太阳跟踪器。基于该模型和获得的天气数据,我们分析了光伏板在一年内整体效率的提高以及在每种典型天气情况下的性能,包括倾斜角度等于纬度的固定倾斜系统、带冷却器的固定倾斜系统、单轴太阳跟踪器和集成冷却器的单轴太阳跟踪器。结果表明,在晴朗少云的夏季,与固定倾斜系统相比,该系统的光伏板性能提高了32.76%。在阴湿雨季的晴天,由于气温低,风速大,光伏板温度低于冷却器的初始设定温度;与固定倾斜系统相比,该系统的光伏板性能提高了12.55%。仿真结果表明,在一年多的时间里,该系统的整体效率比固定倾斜系统、冷却器和单轴太阳跟踪器分别提高了16.35%、13.3%和3.68%。仿真结果可为今后实验模型的建立提供前提。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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