2010
DOI: 10.1016/j.icheatmasstransfer.2010.04.011
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A liquid metal cooling system for the thermal management of high power LEDs

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Cited by 156 publications
(57 citation statements)
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“…Heat storage capacity per volume of these materials is much higher as compared to the heat storage capacity per mass because of their huge density as compared to conventional PCMs [117]. These PCMs are currently studied for the cooling of electronic equipment [118,119], high power LEDs [120], heat exchangers [120] and for exergy from low-grade heat energy to produce electricity [121,122]. Thermo-physical properties of phase change metals and alloys are presented in Table 7.…”
Section: Low Melting Point Metals and Alloysmentioning
confidence: 99%
“…Heat storage capacity per volume of these materials is much higher as compared to the heat storage capacity per mass because of their huge density as compared to conventional PCMs [117]. These PCMs are currently studied for the cooling of electronic equipment [118,119], high power LEDs [120], heat exchangers [120] and for exergy from low-grade heat energy to produce electricity [121,122]. Thermo-physical properties of phase change metals and alloys are presented in Table 7.…”
Section: Low Melting Point Metals and Alloysmentioning
confidence: 99%
“…Ponadto, układ konwekcyjnego chłodzenia powietrznego ma 1 Autor do korespondencji/corresponding author: Magdalena Sobczak, Zachodniopomorski Uniwersytet Technologiczny, al. Piastów 17, 70-310 Szczecin, Tel.…”
Section: Wprowadzenieunclassified
“…Przy wysokich kosztach chło-dzenia ważne jest zintensyfikowanie procesu wymiany ciepła między chłodzi- 1 Autor do korespondencji: Magdalena Sobczak, Zachodniopomorski Uniwersytet Technologiczny, al. Piastów 17, 70-310 Szczecin, tel.…”
Section: Wprowadzenieunclassified
“…poprzez zastosowanie układu wielu dysz chłodzących [6÷7, 12,16] bądź też utworzenie specjalnych struktur na podgrzewanej powierzchni [4÷5, 9, 16÷17]. Do chłodzenia można również wykorzystać różne czynniki robocze: w postaci alkoholi [6÷7, 15], ciekłych metali [1], parafin zmieniających fazę [13], nanopłynów [8]. Jednak ze względów ekonomicznych najczęściej stosowanymi chłodziwami są powietrze i woda.…”
Section: Wprowadzenieunclassified