The attention around Ultra-High CPV is increasing year by year, because of the potential cost-cutting achievable by increasing the concentration ratio. In these systems, an adequate thermal management becomes particularly important: cooling systems are required to be compact, reliable and efficient. In this work, the geometry of a passive heat sink for a 4000x CPV application is optimized to reduce the volume and the costs, limiting the effects on the thermal performance. The same approach is used to model the behavior of a UHCPV heat sink in New Orleans, LA (USA): the hourly cell temperatures are presented in the paper.
Optimization of the least-material approach for passive Ultra-High CPV cooling / Micheli, L.; Fernandez, E. F.; Almonacid, F.; Reddy, K. S.; Mallick, T. K.. - (2015), pp. 1-6. (Intervento presentato al convegno 42nd IEEE Photovoltaic specialist conference, PVSC 2015 tenutosi a New Orleans, LA; USA) [10.1109/PVSC.2015.7355763].
Optimization of the least-material approach for passive Ultra-High CPV cooling
Micheli L.;
2015
Abstract
The attention around Ultra-High CPV is increasing year by year, because of the potential cost-cutting achievable by increasing the concentration ratio. In these systems, an adequate thermal management becomes particularly important: cooling systems are required to be compact, reliable and efficient. In this work, the geometry of a passive heat sink for a 4000x CPV application is optimized to reduce the volume and the costs, limiting the effects on the thermal performance. The same approach is used to model the behavior of a UHCPV heat sink in New Orleans, LA (USA): the hourly cell temperatures are presented in the paper.File | Dimensione | Formato | |
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