Modified solar chimney configuration with a heat exchanger: Experiment and CFD simulation

•This work presents a new solar tower featuring a heat exchanger.•The power output was measure in a prototype, and a numerical model presented.•The proposed chimney shows a higher power density than traditional chimney’s. The performance of a modified solar chimney is studied numerically and experim...

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Veröffentlicht in:Thermal science and engineering progress 2021-05, Vol.22, p.100850, Article 100850
Hauptverfasser: Aliaga, D.M., Feick, R., Brooks, W.K., Mery, M., Gers, R., Levi, J.F., Romero, C.P.
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Sprache:eng
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Zusammenfassung:•This work presents a new solar tower featuring a heat exchanger.•The power output was measure in a prototype, and a numerical model presented.•The proposed chimney shows a higher power density than traditional chimney’s. The performance of a modified solar chimney is studied numerically and experimentally. In this solar chimney, the classical solar collector array is replaced by a heat exchanger located in the middle section of the chimney. The natural convection inside is simulated by the commercial Computational Fluid Dynamics (CFD) code COMSOL. This software is used first to perform an optimization of the power output and to determine the optimal dimensions of the chimney prototype. From the parameters obtained numerically, a two-meter high chimney model is built to measure temperature profiles and power output of the chimney. The comparison between numerical and experimental results shows a difference lower than 6.2% for the power generated. Our prototype achieves a higher power density in comparison with other reported prototypes based on conventional solar chimney concept of similar height.
ISSN:2451-9049
2451-9049
DOI:10.1016/j.tsep.2021.100850