Infrared and Laser Engineering, Volume. 50, Issue S2, 20210104(2021)

Numerical simulation and experimental verification of underwater thermal jet based on PANS method

Delong Mao, Kangshuo Wang, Lin He, Jiang Sha, Ben Wang, and Yihao Wang
Author Affiliations
  • System Engineering Research Institute, Beijing 100094, China
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    Figures & Tables(10)
    Towing tank
    Grid near nozzle
    Variation curve of jet floating-up height with time
    Time mean of jet experimental results
    Temperature distribution on jet center curve
    Local average temperature difference distribution of thermal jet at different floating-up heights
    Isosurface of temperature difference in 0.5 ℃
    • Table 1. Comparison of calculation and measurement results under static condition

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      Table 1. Comparison of calculation and measurement results under static condition

      Time/sSimulation resultMeasuring result
      4
      8
      16
    • Table 2. Parameters of moving conditions

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      Table 2. Parameters of moving conditions

      Serial numberParameterSet value
      1Emission temperature difference/℃25
      2Discharge rate/m·s−10.2
      3Travel speed/m·s−10.01
      4Velocity of surrounding water0
      5Emission depth/mm350
      6Measuring plane height/mm100,200,350
    • Table 3. Comparison of calculation results and experimental results of thermal jet temperature distribution at different floating-up heights

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      Table 3. Comparison of calculation results and experimental results of thermal jet temperature distribution at different floating-up heights

      Height/mmSimulation resultMeasuring result
      100
      200
      350
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    Delong Mao, Kangshuo Wang, Lin He, Jiang Sha, Ben Wang, Yihao Wang. Numerical simulation and experimental verification of underwater thermal jet based on PANS method[J]. Infrared and Laser Engineering, 2021, 50(S2): 20210104

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    Paper Information

    Category: Ocean optics

    Received: Jan. 14, 2021

    Accepted: --

    Published Online: Dec. 3, 2021

    The Author Email:

    DOI:10.3788/IRLA20210104

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