LAPSE:2023.3347
Published Article

LAPSE:2023.3347
Simulation and Experimental Evaluation of a Refractive-Reflective Static Solar Concentrator
February 22, 2023
Abstract
Static solar devices have advantages over solar tracking systems. In pure reflective systems, solar reception is limited by the entry angle of the reflector. Many reflective systems are based on mirror Compound Parabolic Concentrators. The solar collection can be improved by placing a lens on top of the reflector. In this work, a static system is proposed, consisting of a mirror funnel concentrator with a prism on top. The system is designed using ray-tracing software and is subsequently built and experimentally evaluated. The system designed for an effective concentration factor of 4× reaches an effective concentration of 3.2× at 11:30 a.m. and has an acceptance angle of 60°. Considering the time interval from 8 a.m. to 4 p.m., the system harvests 30.7% more energy than the flat surface. If the time interval considered is from 9:30 a.m. to 2:30 p.m., the increase in harvest is ∼77%. The incorporation of the prism represents an increase of ∼6% compared to the bare reflective system.
Static solar devices have advantages over solar tracking systems. In pure reflective systems, solar reception is limited by the entry angle of the reflector. Many reflective systems are based on mirror Compound Parabolic Concentrators. The solar collection can be improved by placing a lens on top of the reflector. In this work, a static system is proposed, consisting of a mirror funnel concentrator with a prism on top. The system is designed using ray-tracing software and is subsequently built and experimentally evaluated. The system designed for an effective concentration factor of 4× reaches an effective concentration of 3.2× at 11:30 a.m. and has an acceptance angle of 60°. Considering the time interval from 8 a.m. to 4 p.m., the system harvests 30.7% more energy than the flat surface. If the time interval considered is from 9:30 a.m. to 2:30 p.m., the increase in harvest is ∼77%. The incorporation of the prism represents an increase of ∼6% compared to the bare reflective system.
Record ID
Keywords
collected energy, refractive-reflective system, solar concentrator, solar energy
Subject
Suggested Citation
Luque-Zuñiga G, Vázquez-Medina R, Ramos-López G, Pérez-Márquez DA, Yee-Madeira H. Simulation and Experimental Evaluation of a Refractive-Reflective Static Solar Concentrator. (2023). LAPSE:2023.3347
Author Affiliations
Luque-Zuñiga G: Instituto Politécnico Nacional, CICATA Unidad Querétaro, Querétaro 76090, Mexico [ORCID]
Vázquez-Medina R: Instituto Politécnico Nacional, CICATA Unidad Querétaro, Querétaro 76090, Mexico [ORCID]
Ramos-López G: Instituto Politécnico Nacional, CICATA Unidad Querétaro, Querétaro 76090, Mexico [ORCID]
Pérez-Márquez DA: Departamento de Ingeniería en Diseño Industrial, Universidad Politécnica del Bicentenario, Guanajuato 36283, Mexico
Yee-Madeira H: Instituto Politécnico Nacional, Escuela Superior de Física y Matemáticas, Unidad Profesional Adolfo López Mateos Zacatenco, Ciudad de Mexico 07320, Mexico
Vázquez-Medina R: Instituto Politécnico Nacional, CICATA Unidad Querétaro, Querétaro 76090, Mexico [ORCID]
Ramos-López G: Instituto Politécnico Nacional, CICATA Unidad Querétaro, Querétaro 76090, Mexico [ORCID]
Pérez-Márquez DA: Departamento de Ingeniería en Diseño Industrial, Universidad Politécnica del Bicentenario, Guanajuato 36283, Mexico
Yee-Madeira H: Instituto Politécnico Nacional, Escuela Superior de Física y Matemáticas, Unidad Profesional Adolfo López Mateos Zacatenco, Ciudad de Mexico 07320, Mexico
Journal Name
Energies
Volume
16
Issue
3
First Page
1071
Year
2023
Publication Date
2023-01-18
ISSN
1996-1073
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Original Submission
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PII: en16031071, Publication Type: Journal Article
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LAPSE:2023.3347
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https://doi.org/10.3390/en16031071
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Feb 22, 2023
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