Thermal Conductivity of Metal-Oxide Nanofluids: Particle Size Dependence and Effect of Laser Irradiation

Author:

Kim Sang Hyun1,Choi Sun Rock1,Kim Dongsik1

Affiliation:

1. Department of Mechanical Engineering, POSTECH, Pohang, 790-784 Korea

Abstract

The thermal conductivity of water- and ethylene glycol-based nanofluids containing alumina, zinc-oxide, and titanium-dioxide nanoparticles is measured using the transient hot-wire method. Measurements are performed by varying the particle size and volume fraction, providing a set of consistent experimental data over a wide range of colloidal conditions. Emphasis is placed on the effect of the suspended particle size on the effective thermal conductivity. Also, the effect of laser-pulse irradiation, i.e., the particle size change by laser ablation, is examined for ZnO nanofluids. The results show that the thermal-conductivity enhancement ratio relative to the base fluid increases linearly with decreasing the particle size but no existing empirical or theoretical correlation can explain the behavior. It is also demonstrated that high-power laser irradiation can lead to substantial enhancement in the effective thermal conductivity although only a small fraction of the particles are fragmented.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference23 articles.

1. Alteration of Thermal Conductivity and Viscosity of Liquid by Dispersing Ultra-Fine Particles;Masuda;Netsu Bussei

2. Measuring Thermal Conductivity of Fluids Containing Oxide Nanoparticles;Lee;ASME J. Heat Transfer

3. Anomalous Thermal Conductivity Enhancement in Nanotube Suspensions;Choi;Appl. Phys. Lett.

4. Anomalously Increased Effective Thermal Conductivities of Ethylene Glycol-Based Nanofluids Containing Copper Nanoparticles;Eastman;Appl. Phys. Lett.

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