TY - JOUR
T1 - Convective heat transfer characters of nanoparticle enhanced latent functionally thermal fluid
AU - Wang, Liang
AU - Lin, Guiping
AU - Chen, Haisheng
AU - Ding, Yulong
PY - 2009/6
Y1 - 2009/6
N2 - The latent heat of the microencapsulated phase change material (MPCM) increases the effective thermal capacity of latent functionally thermal fluid. However, researchers found that the heat transfer performance of such fluids was diminished due to the reduction of the low thermal conductivity of MPCM. For this reason, the nanoparticle enhanced latent functionally thermal fluids were formulated and the heat transfer behaviors of these fluids in a vertical circular tube at the laminar regime were conducted. The result showed that slurries containing 0.5% TiO2 nanoparticles by mass and 5%-20% MPCM by mass exhibited improved heat transfer rates in comparison with the conventional latent functionally thermal fluid and that the enhancement increased with the increasing MPCM concentration and up to 18.9% of the dimensionless wall temperature was reduced.
AB - The latent heat of the microencapsulated phase change material (MPCM) increases the effective thermal capacity of latent functionally thermal fluid. However, researchers found that the heat transfer performance of such fluids was diminished due to the reduction of the low thermal conductivity of MPCM. For this reason, the nanoparticle enhanced latent functionally thermal fluids were formulated and the heat transfer behaviors of these fluids in a vertical circular tube at the laminar regime were conducted. The result showed that slurries containing 0.5% TiO2 nanoparticles by mass and 5%-20% MPCM by mass exhibited improved heat transfer rates in comparison with the conventional latent functionally thermal fluid and that the enhancement increased with the increasing MPCM concentration and up to 18.9% of the dimensionless wall temperature was reduced.
KW - Convective heat transfer
KW - Latent functionally thermal fluid
KW - Microencapsulated phase change material
KW - Nanoparticle
UR - https://www.scopus.com/pages/publications/65649107327
U2 - 10.1007/s11431-009-0122-4
DO - 10.1007/s11431-009-0122-4
M3 - 文章
AN - SCOPUS:65649107327
SN - 1006-9321
VL - 52
SP - 1744
EP - 1750
JO - Science in China, Series E: Technological Sciences
JF - Science in China, Series E: Technological Sciences
IS - 6
ER -