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    Thermal Analysis of Jet-in-Crossflow Technique for Hotspot Treatment in Electronics Cooling

    Source: ASME Journal of Heat and Mass Transfer:;2024:;volume( 146 ):;issue: 004::page 42301-1
    Author:
    Corvera, Christian
    ,
    Mahjoob, Shadi
    DOI: 10.1115/1.4064458
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Artificial intelligence and machine learning systems, faster processors, miniaturized computational components, and supercomputer centers are accompanied by larger heat dissipation and the need for innovative cooling methods. In this work, a combined jet-in-crossflow cooling system is introduced and numerically investigated with an application in localized hotspot treatment. A validation study, a grid independence study, and an uncertainty analysis are conducted to ensure the accuracy of the obtained results. Both vertical and angled jet impingement at different jet locations are studied indicating the advantage of using a 45 deg angled jet placed upstream of the hotspot. In addition, the advantage of jet-in-crossflow in comparison with pure crossflow and pure jet impingement is studied. The results show that the angled jet-in-crossflow setup, in comparison with pure crossflow at the same overall mass flowrate, considerably reduces the temperature values at the heated surface, and decreases the temperature standard deviation by 65%, while lowering the required pumping power by 35%. In comparison with pure jet impingement at the same overall mass flowrate, the angled jet-in-crossflow method reduces the required pumping power by 87%, while local temperature and temperature standard deviation values are very comparable. Furthermore, the advantage of structured rib channels in cooling effectiveness is investigated for the jet-in-crossflow setup. Although the addition of a rib slightly increases the pressure drop, the employment of a proper rib size minimizes the increased pressure drop while considerably improving the cooling effectiveness and temperature uniformity.
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      Thermal Analysis of Jet-in-Crossflow Technique for Hotspot Treatment in Electronics Cooling

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    contributor authorCorvera, Christian
    contributor authorMahjoob, Shadi
    date accessioned2024-12-24T18:57:22Z
    date available2024-12-24T18:57:22Z
    date copyright1/29/2024 12:00:00 AM
    date issued2024
    identifier issn2832-8450
    identifier otherht_146_04_042301.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4303042
    description abstractArtificial intelligence and machine learning systems, faster processors, miniaturized computational components, and supercomputer centers are accompanied by larger heat dissipation and the need for innovative cooling methods. In this work, a combined jet-in-crossflow cooling system is introduced and numerically investigated with an application in localized hotspot treatment. A validation study, a grid independence study, and an uncertainty analysis are conducted to ensure the accuracy of the obtained results. Both vertical and angled jet impingement at different jet locations are studied indicating the advantage of using a 45 deg angled jet placed upstream of the hotspot. In addition, the advantage of jet-in-crossflow in comparison with pure crossflow and pure jet impingement is studied. The results show that the angled jet-in-crossflow setup, in comparison with pure crossflow at the same overall mass flowrate, considerably reduces the temperature values at the heated surface, and decreases the temperature standard deviation by 65%, while lowering the required pumping power by 35%. In comparison with pure jet impingement at the same overall mass flowrate, the angled jet-in-crossflow method reduces the required pumping power by 87%, while local temperature and temperature standard deviation values are very comparable. Furthermore, the advantage of structured rib channels in cooling effectiveness is investigated for the jet-in-crossflow setup. Although the addition of a rib slightly increases the pressure drop, the employment of a proper rib size minimizes the increased pressure drop while considerably improving the cooling effectiveness and temperature uniformity.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleThermal Analysis of Jet-in-Crossflow Technique for Hotspot Treatment in Electronics Cooling
    typeJournal Paper
    journal volume146
    journal issue4
    journal titleASME Journal of Heat and Mass Transfer
    identifier doi10.1115/1.4064458
    journal fristpage42301-1
    journal lastpage42301-11
    page11
    treeASME Journal of Heat and Mass Transfer:;2024:;volume( 146 ):;issue: 004
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
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