TY - JOUR
T1 - Applications of surface modification techniques in enhancement of phase change heat transfer
AU - Leu, Tzong Shyng
AU - Lin, Hung Wen
AU - Wu, Tseng Hsin
PY - 2010/5/30
Y1 - 2010/5/30
N2 - When saturated vapor passes over a colder substrate, liquid drops nucleate and grow by coalescence with surrounding drops. Typically speaking, nucleation and growth rates of water droplets are faster on a hydrophilic surface than on a hydrophobic surface. However, heat transfer efficiency degrades once surface becomes filmwise condensation. In this paper, vapor condensing on a gradient surface to prevent filmwise condensation is studied. New gradient surfaces are fabricated. It is demonstrated that 10% increase of condensation heat flux can be achieved on a silicon wafer with C = 1 mm gradient surface. The main mechanism for heat transfer enhancement is found to be that drops condensing on C = 1 mm gradient surface begin to move at a much smaller size compared with those on silicon wafer without modification.
AB - When saturated vapor passes over a colder substrate, liquid drops nucleate and grow by coalescence with surrounding drops. Typically speaking, nucleation and growth rates of water droplets are faster on a hydrophilic surface than on a hydrophobic surface. However, heat transfer efficiency degrades once surface becomes filmwise condensation. In this paper, vapor condensing on a gradient surface to prevent filmwise condensation is studied. New gradient surfaces are fabricated. It is demonstrated that 10% increase of condensation heat flux can be achieved on a silicon wafer with C = 1 mm gradient surface. The main mechanism for heat transfer enhancement is found to be that drops condensing on C = 1 mm gradient surface begin to move at a much smaller size compared with those on silicon wafer without modification.
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U2 - 10.1142/S0217984910023670
DO - 10.1142/S0217984910023670
M3 - Article
AN - SCOPUS:77953168477
SN - 0217-9849
VL - 24
SP - 1381
EP - 1384
JO - Modern Physics Letters B
JF - Modern Physics Letters B
IS - 13
ER -