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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Performance enhancement of a hybrid photovoltaic-thermal-thermoelectric (PVT-TE) module using nanofluid-based cooling: Indoor experimental tests and multi-objective optimization
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Performance enhancement of a hybrid photovoltaic-thermal-thermoelectric (PVT-TE) module using nanofluid-based cooling: Indoor experimental tests and multi-objective optimization

机译:使用基于纳米流体的冷却的混合光伏 - 热 - 热电(PVT-TE)模块的性能提高:室内实验测试和多目标优化

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摘要

In this study, the performance of a photovoltaic-thermal-thermoelectric (PVT-TE) hybrid module under laboratory conditions is evaluated. The hybrid system consists of three main components of a PV module, a TE module, and a cooling unit. To reduce the surface temperature of the PV module and to increase the performance of the whole system, four distinct cooling fluids including natural airflow, water, nano-silica-water (SiO2-H2O), and nano-silver-water (Ag-H2O) were used. From the indoor test results, the highest production capacity and efficiency were obtained when the Ag-H2O was used. Additionally, the use of water, SiO2-H2O, and Ag-H2O reduced the PV module's surface temperature by 1.77 degrees C, 9.76 degrees C, and 13.17 degrees C, respectively in comparison with the air-based natural flow cooling. The results also indicated that the efficiency values of the system using water, SiO2-H2O, and Ag-H2O are enhanced by 13.09%, 16.17%, 20.68% respectively, compared to the efficiency of the system when the natural airflow is used for cooling. Finally, using the obtained experimental data as the initial population, a multi-objective genetic algorithm (GA) was developed to find the most efficient or the Pareto set of solutions for performance optimization. Comparing the optimized and experimental results revealed that for all types of cooling fluids, the hybrid power and efficiency have the potential to be increased while the required time can significantly be decreased.
机译:在该研究中,评估了在实验室条件下的光伏 - 热 - 热电(PVT-TE)混合模块的性能。混合系统由PV模块,TE模块和冷却单元的三个主要部件组成。为了降低光伏模块的表面温度并提高整个系统的性能,四种不同的冷却液,包括天然气流,水,纳米二氧化硅 - 水(SiO 2-H 2 O)和纳米银 - 水(Ag-H2O )被使用。从室内测试结果中,使用Ag-H2O时获得最高的生产能力和效率。另外,使用水,SiO 2-H 2 O和Ag-H2O,分别与与空气的自然流动冷却相比,分别将PV模块的表面温度降低1.77℃,9.76℃和13.17摄氏度。结果还表明,与自然气流用于冷却时,分别增强了使用水,SiO2-H 2 O和Ag-H2O的系统的效率值,分别增强了13.09%,16.17%,16.17%,20.68% 。最后,使用所获得的实验数据作为初始群体,开发了一种多目标遗传算法(GA),以找到最有效或帕累托解决方案的性能优化。比较优化和实验结果表明,对于所有类型的冷却流体,混合动力和效率都有可能增加,而所需时间可以显着降低。

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