Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes

This paper presents the heat spreading of the cold plate heat sink with different fin shapes (rectangular, circular, conical) using the jet impingement technique impinging on the heating surface. The parametric monitoring mainly focused on the liquid mass flow rate, inlet coolant temperature, and fi...

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Main Authors: Songkran Wiriyasart, Paisarn Naphon
Format: Article
Language:English
Published: Elsevier 2020-08-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X20301003
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spelling doaj-2dc5c4a8c6be463b98b59f8fe20c28972020-11-25T03:19:20ZengElsevierCase Studies in Thermal Engineering2214-157X2020-08-0120Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapesSongkran Wiriyasart0Paisarn Naphon1Corresponding author.; Thermo-Fluids and Heat Transfer Enhancement Lab. (TFHT), Department of Mechanical Engineering, Faculty of Engineering, Srinakharinwirot University, 63 Rangsit-Nakhonnayok Rd., Ongkharak, Nakhon-nayok, 26120, ThailandThermo-Fluids and Heat Transfer Enhancement Lab. (TFHT), Department of Mechanical Engineering, Faculty of Engineering, Srinakharinwirot University, 63 Rangsit-Nakhonnayok Rd., Ongkharak, Nakhon-nayok, 26120, ThailandThis paper presents the heat spreading of the cold plate heat sink with different fin shapes (rectangular, circular, conical) using the jet impingement technique impinging on the heating surface. The parametric monitoring mainly focused on the liquid mass flow rate, inlet coolant temperature, and fin shapes are investigated. The results showed that the fin shapes of the heat sink influencing its total thermal resistance but small decrement in heat spreading resistance. By fixing other parameters and a jet-plate spacing to jet diameter ratios H/D = 0.8 is considered, it is shown that the circular fin has a higher thermal performance by lowering thermal resistance of the heatsink for 12%, and 25% compared with the rectangular and the conical fin, respectively. More importantly, the lower coolant temperature is reduced heat spreading, results in total thermal resistance are developed. The numerical was carried out, and the clear temperature distribution phenomena with different fin shapes are obtained, which contribute to the heat spreading, spreading resistance, and thermal resistance to the cold plate heat sink for cooling in electronic applications.http://www.sciencedirect.com/science/article/pii/S2214157X20301003Heat spreadingThermal resistanceCold plate heat sinkHeat transferLiquid impingement
collection DOAJ
language English
format Article
sources DOAJ
author Songkran Wiriyasart
Paisarn Naphon
spellingShingle Songkran Wiriyasart
Paisarn Naphon
Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes
Case Studies in Thermal Engineering
Heat spreading
Thermal resistance
Cold plate heat sink
Heat transfer
Liquid impingement
author_facet Songkran Wiriyasart
Paisarn Naphon
author_sort Songkran Wiriyasart
title Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes
title_short Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes
title_full Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes
title_fullStr Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes
title_full_unstemmed Heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes
title_sort heat spreading of liquid jet impingement cooling of cold plate heat sink with different fin shapes
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2020-08-01
description This paper presents the heat spreading of the cold plate heat sink with different fin shapes (rectangular, circular, conical) using the jet impingement technique impinging on the heating surface. The parametric monitoring mainly focused on the liquid mass flow rate, inlet coolant temperature, and fin shapes are investigated. The results showed that the fin shapes of the heat sink influencing its total thermal resistance but small decrement in heat spreading resistance. By fixing other parameters and a jet-plate spacing to jet diameter ratios H/D = 0.8 is considered, it is shown that the circular fin has a higher thermal performance by lowering thermal resistance of the heatsink for 12%, and 25% compared with the rectangular and the conical fin, respectively. More importantly, the lower coolant temperature is reduced heat spreading, results in total thermal resistance are developed. The numerical was carried out, and the clear temperature distribution phenomena with different fin shapes are obtained, which contribute to the heat spreading, spreading resistance, and thermal resistance to the cold plate heat sink for cooling in electronic applications.
topic Heat spreading
Thermal resistance
Cold plate heat sink
Heat transfer
Liquid impingement
url http://www.sciencedirect.com/science/article/pii/S2214157X20301003
work_keys_str_mv AT songkranwiriyasart heatspreadingofliquidjetimpingementcoolingofcoldplateheatsinkwithdifferentfinshapes
AT paisarnnaphon heatspreadingofliquidjetimpingementcoolingofcoldplateheatsinkwithdifferentfinshapes
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