Analysis of Convective Heat Transfer in Nanofluids Composed of Oxide-Ceramics Particles and Ethylene Glycol Aqueous Solution
Author:
Affiliation:
1. Energy Management Research-Domain, Emerging Technology Division, Toyota Central Research & Development Laboratories., Inc.
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/jcej/55/7/55_21we105/_pdf
Reference24 articles.
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2. Azizian, R., E. Doroodchi, T. McKrell, J. Buongiorno, L. W. Hu and B. Moghtaderi; “Effect of Magnetic Field on Laminar Convective Heat Transfer of Magnetite Nanofluids,” Int. J. Heat Mass Transf., 68, 94–109 (2014)
3. Azmi, W. H., K. V. Sharma, P. K. Sarma, R. Mamat, S. Anuar and V. Dharma Rao; “Experimental Determination of Turbulent Forced Convection Heat Transfer and Friction Factor with SiO2 Nanofluid,” Exp. Therm. Fluid Sci., 51, 103–111 (2013)
4. Bergles, A. E.; “Techniques to Augment Heat Transfer,” Handbook of heat transfer applications, pp. 31–380, W. M. Rohsenow, J. P. Hartnett, and E. N. Ganic eds., McGrawHill, New York, U.S.A. (1985)
5. Buschmann, M. H., R. Azizian, T. Kempe, J. E. Juliá, R. Martínez-Cuenca, B. Sundén, Z. Wu, A. Seppälä and T. Ala-Nissila; “Correct Interpretation of Nanofluid Convective Heat Transfer,” Int. J. Therm. Sci., 129, 504–531 (2018)
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