Published September 2002 | Version v1
Journal article

A study on the improvement of heat transfer performance in low temperature closed thermosyphon

  • 1. Pukyong National Univ., Busan (Korea, Republic of)
  • 2. Daejin Univ., Seoul (Korea, Republic of)

Description

The study focuses on the heat transfer performance of two-phase closed thermosyphons with plain copper tube and tubes having 50, 60, 70, 80, 90 internal grooves. Three different working fluids(distilled water, methanol, ethanol) are used with various volumetric liquid fill charge ratio from 10 to 40%. Additional experimental parameters such as operating temperature and inclination angle of zero to 90 degrees are used for the comparison of heat transfer performance of the thermosyphon. Condensation and boiling heat transfer coefficients, heat flux are obtained using experimental data for each case of specific parameter. The experimental results are assessed and compared with existing correlations. The results show that working fluids, liquid fill charge ratio, number of grooves and inclination angle are very important factors for the operation of thermosyphons. The relatively high rate of heat transfer is achieved when the thermosyphon with internal grooves is used compared to that with plain tube. The optimum liquid fill charge ratio for the best heat transfer performance lies between 25% and 30%. The range of the optimum inclination angle for this study is 20 .deg . ∼30 deg. from the horizontal position

Additional details

Publishing Information

Journal Title
KSME International Journal
Journal Volume
16
Journal Issue
9
Series
23 refs, 16 figs, 1 tab
Journal Page Range
p. 1102-1111
ISSN
1226-4865

INIS

Country of Publication
Korea, Republic of
Country of Input or Organization
Korea, Republic of
INIS RN
36106258
Subject category
S42: ENGINEERING;
Descriptors DEI
BOILING; COPPER; HEAT FLUX; HEAT PIPES; HEAT TRANSFER; LATENT HEAT STORAGE; PERFORMANCE; THERMOSYPHONS; TUBES
Descriptors DEC
ELEMENTS; ENERGY STORAGE; ENERGY TRANSFER; HEAT STORAGE; METALS; PHASE TRANSFORMATIONS; STORAGE; TRANSITION ELEMENTS