Investigations of heat conductivity of nanofluids based on aluminum oxide nanoparticles
Nanosistemy: fizika, himiâ, matematika, Tome 3 (2012) no. 1, pp. 27-33
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The heat conductivity of nanofluids based on aluminum oxide nanoparticles (mean diameter of 13 nm) have been measured experimentally. Glycol and isopropyl alcohol as the based fluids were used. The non stationary “hot wire” method has been used. It was shown the heat conductivity at low volume concentration of nanoparticles (0,5 %) corresponds to classical Maxwell theory. For higher volume concentration of nanoparticles in glycol the heat conductivity deviated to low side due to aggregate instability of the nanofluid. The anomalous growth of heat conductivity in isopropyl alcohol have been observed. The possible nature of the observed phenomenon is discussed in conclusion.
Keywords:
nanofluid, heat conductivity.
@article{NANO_2012_3_1_a1,
author = {S. P. Bardakhanov and S. A. Novopashin and M. A. Serebryakova},
title = {Investigations of heat conductivity of nanofluids based on aluminum oxide nanoparticles},
journal = {Nanosistemy: fizika, himi\^a, matematika},
pages = {27--33},
publisher = {mathdoc},
volume = {3},
number = {1},
year = {2012},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/NANO_2012_3_1_a1/}
}
TY - JOUR AU - S. P. Bardakhanov AU - S. A. Novopashin AU - M. A. Serebryakova TI - Investigations of heat conductivity of nanofluids based on aluminum oxide nanoparticles JO - Nanosistemy: fizika, himiâ, matematika PY - 2012 SP - 27 EP - 33 VL - 3 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/NANO_2012_3_1_a1/ LA - ru ID - NANO_2012_3_1_a1 ER -
%0 Journal Article %A S. P. Bardakhanov %A S. A. Novopashin %A M. A. Serebryakova %T Investigations of heat conductivity of nanofluids based on aluminum oxide nanoparticles %J Nanosistemy: fizika, himiâ, matematika %D 2012 %P 27-33 %V 3 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/NANO_2012_3_1_a1/ %G ru %F NANO_2012_3_1_a1
S. P. Bardakhanov; S. A. Novopashin; M. A. Serebryakova. Investigations of heat conductivity of nanofluids based on aluminum oxide nanoparticles. Nanosistemy: fizika, himiâ, matematika, Tome 3 (2012) no. 1, pp. 27-33. http://geodesic.mathdoc.fr/item/NANO_2012_3_1_a1/