光伏系统
光电-热混合太阳能集热器
环境科学
热的
汽车工程
太阳能
能源消耗
混合动力系统
通风(建筑)
材料科学
核工程
机械工程
电气工程
计算机科学
工程类
气象学
物理
机器学习
作者
Lyes Boutina,Abdelkrim Khelifa,Mohamed Lebbi,Fatah Bedaouche,Khaled Touafek,Sofiane Kherrour,Abdelhalim Borni
摘要
Abstract Solar panels' efficiency is highly affected by high‐operating temperatures, especially in semi‐arid and arid regions. This outdoor experimental study aimed to enhance the energy performance of the photovoltaic module by integrating two fans at the outlet of the thermal/photovoltaic hybrid system to ensure forced ventilation. The work novelty depending on achieving low energy consumption by DC fans, so that there is a proportional relationship between the intensity of solar radiation and the energy produced and consumed. The influence of the reduced temperature, operating temperature, and solar radiation intensity on the energy performance of the photovoltaic/thermal hybrid system was analyzed experimentally. The obtained results showed an improvement in electrical and overall efficiency of the new hybrid system by about 4% and 60%, respectively, compared to the conventional photovoltaic module. On the contrary, a decrease in the temperature of the PV module installed in the hybrid system was measured by about 9°C, compared to the conventional photovoltaic module. In addition to the effectiveness of the new technology air cooling proposed at the lowest consumption cost, the thermal energy generated from the proposed system can be invested in solar drying and building applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI