• Title of article

    Correlation to predict heat transfer characteristics of a radially rotating heat pipe at vertical position

  • Author/Authors

    Waowaew، N. نويسنده , , P Terdtoon، نويسنده , , S Maezawa، نويسنده , , P. Kamonpet، نويسنده , , W Klongpanich، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    14
  • From page
    1019
  • To page
    1032
  • Abstract
    The heat transfer characteristics of a radially rotating heat pipe (RRHP) depend on a number of parameters. This paper is a study of the effects of these parameters. They are the inner diameter of the tube, aspect ratio, rotational acceleration, working fluid and the dimensionless parameters of heat transfer. RRHPs, made of copper tubes with inner diameters of 11, 26, and 50.4 mm, were used in the experiments. The aspect ratios were 5, 10, 20 and 40 respectively. The selected working fluids were water, ethanol and R123 (CHCl2CF3) with a filling ratio of 60% of evaporator volume. The experiments were conducted at inclination angles of 0–90° from horizontal axis and the rotational accelerations were lower, higher and equal to gravitational acceleration. The working temperature was 90 °C. The evaporator section was heated by electric power while heat in the condenser section was removed naturally by air. The evaporator and adiabatic section of the RRHP were well insulated with ceramic fibers. The experimental results showed that the heat flux decreases with an increasing inner diameter, and decreases with an increasing aspect ratio. The heat flux increases with an increasing rotational acceleration and decreases with an increasing liquid density of the working fluid. A correlation to predict the heat transfer rate at vertical position can be established.
  • Keywords
    Radially rotating heat pipe , Heat transfer characteristic , Inner diameter , Working fluid , Dimensionless parameter
  • Journal title
    Applied Thermal Engineering
  • Serial Year
    2003
  • Journal title
    Applied Thermal Engineering
  • Record number

    1023747