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    Heat Transfer Characteristics in a Rotating Pin Finned Duct With Different Protrusion Locations

    Source: Journal of Thermal Science and Engineering Applications:;2019:;volume( 011 ):;issue: 006::page 61009
    Author:
    Du, Wei
    ,
    Luo, Lei
    ,
    Wang, Songtao
    ,
    Bi, Shaokang
    ,
    Zhang, Xinghong
    DOI: 10.1115/1.4043262
    Publisher: American Society of Mechanical Engineers (ASME)
    Abstract: The heat transfer in a pin finned duct is augmented by the protrusion in this study. The realizable k–ε turbulence model coupled with the enhanced wall function is used to obtain the flow structure and heat transfer characteristics. Six different rotational numbers (Ro = 0, 0.2, 0.4, 0.6, 0.8, and 1.0) and three different protrusion locations have been introduced. The pin fins and protrusions are placed on a simplified three-dimensional rectangular duct. Numerical results reveal that the Nusselt number in the pin finned channel has remarkable increase after adoption of the protrusions. In addition, the protrusion location and the rotational number have significant influence on the heat transfer distribution. The high rotational number is in favor of heat transfer enhancement on the endwall surface. Furthermore, the highest Nusselt number is occurred where protrusion is near the pin fin windward side.
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      Heat Transfer Characteristics in a Rotating Pin Finned Duct With Different Protrusion Locations

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/4259046
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    • Journal of Thermal Science and Engineering Applications

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    contributor authorDu, Wei
    contributor authorLuo, Lei
    contributor authorWang, Songtao
    contributor authorBi, Shaokang
    contributor authorZhang, Xinghong
    date accessioned2019-09-18T09:07:01Z
    date available2019-09-18T09:07:01Z
    date copyright5/13/2019 12:00:00 AM
    date issued2019
    identifier issn1948-5085
    identifier othertsea_11_6_061009
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4259046
    description abstractThe heat transfer in a pin finned duct is augmented by the protrusion in this study. The realizable k–ε turbulence model coupled with the enhanced wall function is used to obtain the flow structure and heat transfer characteristics. Six different rotational numbers (Ro = 0, 0.2, 0.4, 0.6, 0.8, and 1.0) and three different protrusion locations have been introduced. The pin fins and protrusions are placed on a simplified three-dimensional rectangular duct. Numerical results reveal that the Nusselt number in the pin finned channel has remarkable increase after adoption of the protrusions. In addition, the protrusion location and the rotational number have significant influence on the heat transfer distribution. The high rotational number is in favor of heat transfer enhancement on the endwall surface. Furthermore, the highest Nusselt number is occurred where protrusion is near the pin fin windward side.
    publisherAmerican Society of Mechanical Engineers (ASME)
    titleHeat Transfer Characteristics in a Rotating Pin Finned Duct With Different Protrusion Locations
    typeJournal Paper
    journal volume11
    journal issue6
    journal titleJournal of Thermal Science and Engineering Applications
    identifier doi10.1115/1.4043262
    journal fristpage61009
    journal lastpage061009-15
    treeJournal of Thermal Science and Engineering Applications:;2019:;volume( 011 ):;issue: 006
    contenttypeFulltext
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