Laser & Infrared, Volume. 54, Issue 6, 951(2024)

Optimized design and simulation of air-cooled heat dissipation fines for an airborne optoelectronic system

LI Shu-pei, SUN Dong-ming, ZHANG Sai, HU Jian-fei, and SHI Zhang
Author Affiliations
  • The 11th Research Institute of CETC, Beijing 100015, China
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    References(5)

    [1] [1] Onoroh F, Adewumi O, Ogbonnaya M. Characterization of a finned heat sink for a power inverter[J]. Journal of physics: Conference Series, 2019, 1379(2): 022003.

    [2] [2] Cortes Cristobal, ArauzoInmaculada, Campo Antonio. Dimensionless parameters for the optimization of annular-finned tubes[C]//American Society of Mechanical Engineers (ASME), 2000: 69-74.

    [3] [3] Harun Bilirgen, Stephen Dunbar, Edward K. Levy. Numerical modeling of finned heat exchangers[J]. Applied Thermal Engineering, 2013, 61(2): 278-288.

    [4] [4] Mi Sandar, Gross. Numerical study of fin-spacing effects inannular-finned tube heat exchangers[J]. International Journal of Heat and MassTransfer, 2004, 47(8-9): 1953-1964.

    [5] [5] M S Mon. Numerical investigation of air-side heat transfer and pressure drop in circular finned-tube heat exchangers[D]. Von der Fakultt fr Maschinenbau: Verfahrensund Energietechnik der Technischen Universitt Bergakademie Freiberg, Germany, 2003.

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    LI Shu-pei, SUN Dong-ming, ZHANG Sai, HU Jian-fei, SHI Zhang. Optimized design and simulation of air-cooled heat dissipation fines for an airborne optoelectronic system[J]. Laser & Infrared, 2024, 54(6): 951

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    Paper Information

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    Received: Aug. 31, 2023

    Accepted: May. 21, 2025

    Published Online: May. 21, 2025

    The Author Email:

    DOI:10.3969/j.issn.1001-5078.2024.06.017

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