The construction of a very low-volume and high-power solar power plant with an approach to optimize existing solar panels
The purpose of this research is to provide a new type of power generation system by integrating absorbent plate and thermoelectric generator, in addition to generating electricity from sunlight, from industrial waste heat energy such as power plants, exhaust gases Exhaust vehicles and other heat-generating equipment during the day-to-day electricity generation. In this project, a new model of the power generation system that can provide such a goal is proposed, and in the first step it was simulated and simulated using simulation software. In the next step, as a practical study, a small-sized sample was constructed and tested, which ultimately compared the results of the test with the results of the theory. Effect of environment, solar radiation intensity, collector length or width, air channel height, absorbent plate and wind speed were investigated.The results showed that ambient temperature and solar radiation intensity have a significant impact on electrical power and overall efficiency of the ABTE system, so that the performance of the system in Shiraz is close to 65 percent higher than the city of Ardabil. Increasing the channel height and decreasing the wind speed will increase the production electricity and overall system efficiency, while the collector length will have a positive effect on the produced electricity and will negatively affect the overall system performance. Also, increasing the absorption coefficient of high conductivity of the adsorbent plate increases the performance of the ABTE system, so that the system provided with silver adsorbent plate is more productive than aluminum in copper adsorbent sheet than aluminum.
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