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    Experimental Analysis of the Improvement of Heat Transfer in Tube Heat Exchangers Via Passive Flow Generators Using Wire Coil Inserts

    Source: ASME Journal of Heat and Mass Transfer:;2024:;volume( 146 ):;issue: 006::page 61901-1
    Author:
    Ibrahim, Farah Arina
    ,
    Muhamad, Mohd Ridha
    ,
    Mohd Zubir, Mohd Nashrul
    ,
    Omar, Mohd Bin
    ,
    Siri, Zailan
    ,
    Hasan, Rony Mehedy
    ,
    Eid, Mohamed Moustafa Abdelhalim Ahmed
    DOI: 10.1115/1.4065115
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Due to their high performance and low-cost demands, internally treated tube heat exchanger surfaces are one of the passive heat transfer enhancements that have caught the industry's attention. At bulk temperatures of 30 °C, an experiment for the insertion of 1 mm and 0.5 mm wire coils with a constant pitch length of 8 mm was carried out in this study. The results on the improvement of heat transfer, including the velocity profile, Nusselt number (6000 < Re < 20,000), friction factor, and thermal enhancement efficiency, were significant. Based on a lower surface temperature recorded beyond the uncertainty value, the results demonstrated an improvement in heat transfer for smaller diameter of wire coil inserts. It's interesting that this improvement is concentrated at low Reynolds numbers, indicating that there may be a point at which an increase in wire thickness does not necessarily result in an equivalent improvement in heat transfer. For both wire thicknesses, a Nusselt number increase of up to five times was visible. The friction factor penalty, however, varies depending on the wire thickness, with a higher magnitude (3.2-fold increase) obtained for 1 mm as opposed to a 1.8-fold increase for the lower counterpart. This distinction results in the 0.5 mm coil insert gaining better overall performance with an average of 2.2 for the thermal performance ratio, further solidifying the advantage of this technique for enhancing heat transfer in conduits. The diameter of the wire coil is found to be a key factor in improving heat transfer and convection on the boundary layer surface.
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      Experimental Analysis of the Improvement of Heat Transfer in Tube Heat Exchangers Via Passive Flow Generators Using Wire Coil Inserts

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4303054
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    contributor authorIbrahim, Farah Arina
    contributor authorMuhamad, Mohd Ridha
    contributor authorMohd Zubir, Mohd Nashrul
    contributor authorOmar, Mohd Bin
    contributor authorSiri, Zailan
    contributor authorHasan, Rony Mehedy
    contributor authorEid, Mohamed Moustafa Abdelhalim Ahmed
    date accessioned2024-12-24T18:57:45Z
    date available2024-12-24T18:57:45Z
    date copyright4/17/2024 12:00:00 AM
    date issued2024
    identifier issn2832-8450
    identifier otherht_146_06_061901.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4303054
    description abstractDue to their high performance and low-cost demands, internally treated tube heat exchanger surfaces are one of the passive heat transfer enhancements that have caught the industry's attention. At bulk temperatures of 30 °C, an experiment for the insertion of 1 mm and 0.5 mm wire coils with a constant pitch length of 8 mm was carried out in this study. The results on the improvement of heat transfer, including the velocity profile, Nusselt number (6000 < Re < 20,000), friction factor, and thermal enhancement efficiency, were significant. Based on a lower surface temperature recorded beyond the uncertainty value, the results demonstrated an improvement in heat transfer for smaller diameter of wire coil inserts. It's interesting that this improvement is concentrated at low Reynolds numbers, indicating that there may be a point at which an increase in wire thickness does not necessarily result in an equivalent improvement in heat transfer. For both wire thicknesses, a Nusselt number increase of up to five times was visible. The friction factor penalty, however, varies depending on the wire thickness, with a higher magnitude (3.2-fold increase) obtained for 1 mm as opposed to a 1.8-fold increase for the lower counterpart. This distinction results in the 0.5 mm coil insert gaining better overall performance with an average of 2.2 for the thermal performance ratio, further solidifying the advantage of this technique for enhancing heat transfer in conduits. The diameter of the wire coil is found to be a key factor in improving heat transfer and convection on the boundary layer surface.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleExperimental Analysis of the Improvement of Heat Transfer in Tube Heat Exchangers Via Passive Flow Generators Using Wire Coil Inserts
    typeJournal Paper
    journal volume146
    journal issue6
    journal titleASME Journal of Heat and Mass Transfer
    identifier doi10.1115/1.4065115
    journal fristpage61901-1
    journal lastpage61901-9
    page9
    treeASME Journal of Heat and Mass Transfer:;2024:;volume( 146 ):;issue: 006
    contenttypeFulltext
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