Extending photovoltaic operation beyond 2000 suns using a liquid metal thermal interface with passive cooling
Photovoltaic systems operating at solar concentration levels in excess of 500 suns require efficient cooling systems to manage the associated high incident power densities above 50 W/cm 2 . We present results for a liquid metal thermal interface with a 2-5 mm 2 C/W thermal resistance used in conjunc...
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Published in | 2008 33rd IEEE Photovoltaic Specialists Conference pp. 1 - 3 |
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Main Authors | , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.05.2008
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Subjects | |
Online Access | Get full text |
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Summary: | Photovoltaic systems operating at solar concentration levels in excess of 500 suns require efficient cooling systems to manage the associated high incident power densities above 50 W/cm 2 . We present results for a liquid metal thermal interface with a 2-5 mm 2 C/W thermal resistance used in conjunction with a 1 cm 2 commercial triple junction concentrator cell to produce up to 75 W of electrical power. We show that the liquid metal interface can be used to extend the limits of passive cooling relative to polymer thermal interface materials for solar photovoltaic concentrator systems. We will discuss the operation of triple junction photovoltaic cells above the 2000 sun level employing the liquid metal thermal interface and passive cooling. |
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ISBN: | 9781424416400 142441640X |
ISSN: | 0160-8371 |
DOI: | 10.1109/PVSC.2008.4922753 |