Laser & Optoelectronics Progress, Volume. 57, Issue 23, 231407(2020)

Study on Kilowatt-Level Cladding Power Stripper Using Spiral Flow Channel Water-Cooling Technology

Qinggan Xia1,3, Wenbo Xiao1,2,3、*, Diyou Jiang1,3, Xin Jin1,3, Guomin Ye1,3, and Yinshui He4
Author Affiliations
  • 1Key Laboratory of Nondestructive Testing, Ministry of Education, Nanchang Hangkong University, Nanchang Jiangxi, 330063, China
  • 2Key Laboratory of Image Processing & Pattern Recognition in Jiangxi Province, Nanchang Hangkong University, Nanchang, Jiangxi 330063, China;
  • 3Jiangxi Engineering Laboratory for Optoelectronics Testing Technology, Nanchang, Jiangxi 330063, China
  • 4College of Mechanical and Electrical Engineering, Nanchang University, Nanchang, Jiangxi 330031, China
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    Figures & Tables(9)
    Structure diagram of traditional kilowatt CPS. (a) Stripper 1; (b) stripper 2
    Structure diagram of spiral channel water-cooled kilowatt CPS
    Simulation diagram of thermal effect. (a) Stripper 1; (b) stripper 2; (c) stripper 3
    CPS mean temperature changes with time when Tmold=353.15K
    • Table 1. Thermal performance data of strippers 1, 2, and 3

      View table

      Table 1. Thermal performance data of strippers 1, 2, and 3

      Serial numberTmax/KTmin/KTdif/K
      Stripper 1Simulation data354.00293.0061.00
      Experimental data353.15293.1560.00
      Stripper 2Simulation data352.00317.0035.00
      Experimental data351.65315.6536.00
      Stripper 3Simulation data305.00289.0016.00
    • Table 2. Data table of the influence of different Tmold on the thermal performance of the strippers

      View table

      Table 2. Data table of the influence of different Tmold on the thermal performance of the strippers

      Variable nameSerial number
      1234
      Tmold/K290.15293.15295.15353.15
      Tmax/K305.00305.00305.00305.00
      Tmin/K288.94288.94288.94288.94
      Tdif/K16.0616.0616.0616.06
      Vmax/(m·s-1)23.5923.5923.5923.59
    • Table 3. Data table of the influence of different Tcool on the thermal performance of the stripper

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      Table 3. Data table of the influence of different Tcool on the thermal performance of the stripper

      Variable nameSerial number
      123
      Tcool/K283.15288.15293.15
      Tmax/K300.49305.00309.62
      Tmin/K284.29288.94283.61
      Tdif/K16.2016.0616.01
      Vmax/(m·s-1)23.5923.5923.59
    • Table 4. Data table of the influence of different Di on the thermal performance of the stripper

      View table

      Table 4. Data table of the influence of different Di on the thermal performance of the stripper

      Variable nameSerial number
      123
      Di/mm2.002.503.00
      Tmax/K307.12305.76305.00
      Tmin/K289.30289.12288.84
      Tdif/K17.8216.6416.16
      Vmax/(m·s-1)53.2033.9923.59
    • Table 5. Thermal performance data table of different Pb under optimal environment

      View table

      Table 5. Thermal performance data table of different Pb under optimal environment

      Variable nameSerial number
      123456
      Pb/W100020003000400042004500
      Tmax/K300.49316.92333.41349.91353.21358.16
      Tmin/K284.29284.82285.34285.87285.97286.13
      Tdif/K16.2032.1048.0764.0467.2472.03
      Vmax/(m·s-1)23.5923.6023.6123.6123.6223.62
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    Qinggan Xia, Wenbo Xiao, Diyou Jiang, Xin Jin, Guomin Ye, Yinshui He. Study on Kilowatt-Level Cladding Power Stripper Using Spiral Flow Channel Water-Cooling Technology[J]. Laser & Optoelectronics Progress, 2020, 57(23): 231407

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    Paper Information

    Category: Lasers and Laser Optics

    Received: Apr. 2, 2020

    Accepted: May. 8, 2020

    Published Online: Nov. 25, 2020

    The Author Email: Wenbo Xiao (xiaowenbo1570@163.com)

    DOI:10.3788/LOP57.231407

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