| RENEWABLE ENERGY | 卷:135 |
| Experimental analysis and numerical validation of the solar Dish/Stirling system connected to the electric grid | |
| Article | |
| Mendoza Castellanos, Luis Sebastian1,3  Galindo Noguera, Ana Lisbeth2,3  Carrillo Caballero, Gaylord Enrique3  Leandro De Souza, Andre3  Melian Cobas, Vladimir Rafael3  Silva Lora, Electo Eduardo3  Jose Venturini, Osvaldo3  | |
| [1] Univ Autonoma Bucaramanga UNAB, Res Grp Resources Energy & Sustainabil GIRES, Fac Energy Engn, Bucaramanga, Colombia | |
| [2] Univ La Costa, Barranquilla, Cuc, Colombia | |
| [3] Fed Univ Itajuba UNIFEI, Excellence Grp Thermal Power & Distributed Genera, Inst Mech Engn IEM, Itajuba, MG, Brazil | |
| 关键词: Solar energy; Solar concentrator; Stirling engine; Numerical validation; Energy conversion; Thermal analysis; | |
| DOI : 10.1016/j.renene.2018.11.095 | |
| 来源: Elsevier | |
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【 摘 要 】
The use of solar-powered Stirling engines to convert thermal energy into electricity is a promising and renewable technological solution that can contribute to reducing dependence on fossil fuels for electricity generation. Unfortunately, the lack of experimental performance data and operating parameters for this type of technology limits its detailed characterization, difficult its modeling and design and consequently its utilization. This paper aims to validate the mathematical model of the Dish/Stirling system previously published by Mendoza et al. (2017) with the TRINUM system, installed at the Federal University of Itajuba-Brazil. For nominal conditions, the Dish/Stirling system generates an electric power of 1.00 kW at a solar irradiation of 725 W/m(2) with a system overall efficiency of 17.6%. The results show that for solar irradiance values between 520 and 950 W/m(2) the experimental tests and the results of the mathematical modeling do not present considerable differences, obtaining an electric power of 1089 kWe and an efficiency of 17.98%, which represents deviations in the range of 2%-12%. (C) 2018 Elsevier Ltd. All rights reserved.
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| Files | Size | Format | View |
|---|---|---|---|
| 10_1016_j_renene_2018_11_095.pdf | 1386KB |
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