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[PDF] from arxiv.orgA Abbout, G Lemarié… - Physical Review Letters, 2011 - APS
... (4)], one finds that the thermal enhancement of the fringes persists only in an energy
window % 0:2Ā around the resonance. ... These fringes vanish when T ! 0, depend on
the ratio lT=lĀ, and decay with a T-independent length lĀ. ...
Related articles - All 11 versions
W Yu, H Xie, X Wang… - Physics Letters A, 2011 - Elsevier
... Fig. 3b depicted the thermal conductivity enhancement of GN-EG nanofluids as a function of
loading at 30 °C. In the work, k and k 0 represent the thermal conductivity of the nanofluid and
base fluid, respectively, and (k−k 0 )/k 0 is the thermal conductivity enhancement ratio. ...
Cited by 2 - Related articles - All 3 versions
L Lu, ZH Liu… - Solar Energy, 2011 - Elsevier
... of the optimal liquid filling ratio 3.2. Wall temperature distributions for both water and CuO
nanofluids 3.3. Thermal performance of the evaporator for deionized water 3.4. Thermal
performance of the evaporator for CuO nanofluids 3.5. Heat transfer enhancement mechanism ...
All 2 versions
HY Sul, JY Jung… - International Journal of Heat and Mass …, 2011 - Elsevier
... The volume distribution is checked to confirm the distribution stability at the ratio of 2:1
(oil:surfactant) case. To evaluate the thermal conductivity enhancement of the binary
nanoemulsions prepared in this study, the measured thermal conductivities (k) of binary ...
Cited by 1 - Related articles - All 4 versions
CC Teng, CCM Ma, KC Chiou, TM Lee… - Materials Chemistry and …, 2011 - Elsevier
... Second, those results in [Fig. 7], [Fig. 8] and [Fig. 9] pointed out that for adding 1 vol%
functionalized MWCNTs, thermal conductivity enhancement ratio is 141.27%; for adding
25 vol% functionalized BN, thermal conductivity increased to 188.88%. ...
Cited by 1 - Related articles - All 2 versions

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