TY - JOUR
T1 - A mechanism of heat transfer enhancement or deterioration of nanofluid flow boiling heat transfer
AU - Wang, Yun
AU - Deng, Kuanghan
AU - Wu, Junmei M.
AU - Su, Guanghui
AU - Qiu, Suizheng
N1 - Publisher Copyright:
© 2020
PY - 2020/9
Y1 - 2020/9
N2 - In present work, the heat transfer characteristics of SiC/H2O and Graphite/H2O nanofluids flow boiling are experimentally studied with the consideration of pressure, mass flux and heat flux. Compared with based fluid, both enhancement and deterioration of nanofluids boiling heat transfer are found. The flow boiling heat transfer capacities of 0.1vol.% SiC/H2O nanofluid is changed from -24.7% to 30.6% compared with deionized water. Instead, it is changed from -29.4% to 13.3% for 0.1vol.% Graphite/H2O nanofluid. In addition, a mechanism of this phenomenon from the point of view of the assistance and resistance. The assistance includes the improving of the thermal physical properties, the decreasing of surface tension and latent heat, the decreasing of contact angle, decreasing of the surface energy. Instead, the resistance is mainly the decreasing of the number of boiling site.
AB - In present work, the heat transfer characteristics of SiC/H2O and Graphite/H2O nanofluids flow boiling are experimentally studied with the consideration of pressure, mass flux and heat flux. Compared with based fluid, both enhancement and deterioration of nanofluids boiling heat transfer are found. The flow boiling heat transfer capacities of 0.1vol.% SiC/H2O nanofluid is changed from -24.7% to 30.6% compared with deionized water. Instead, it is changed from -29.4% to 13.3% for 0.1vol.% Graphite/H2O nanofluid. In addition, a mechanism of this phenomenon from the point of view of the assistance and resistance. The assistance includes the improving of the thermal physical properties, the decreasing of surface tension and latent heat, the decreasing of contact angle, decreasing of the surface energy. Instead, the resistance is mainly the decreasing of the number of boiling site.
KW - Enhancement or deterioration
KW - Flow boiling heat transfer
KW - Mechanism
KW - Nanofluid
UR - https://www.scopus.com/pages/publications/85086474555
U2 - 10.1016/j.ijheatmasstransfer.2020.119985
DO - 10.1016/j.ijheatmasstransfer.2020.119985
M3 - 文章
AN - SCOPUS:85086474555
SN - 0017-9310
VL - 158
JO - International Journal of Heat and Mass Transfer
JF - International Journal of Heat and Mass Transfer
M1 - 119985
ER -