Biomedical Engineering Reference
In-Depth Information
Einstein, A. (1906), Eine neue bestimmung der molekul-dimension (A new
determination of the molecular dimensions), Ann. Phys., Vol. 19, pp. 289-306.
Garg, J., Poudel, B., Chiesa, M., Gordon, J. B., Ma, J. J., Wang, J. B., Ren, Z. F.,
Kang, Y. T., Ohtani, H., Nanda, J., McKinley, G. H. and Chen, G. (2008),
Enhanced thermal conductivity and viscosity of copper nanoparticles in
ethylene glycol nanofluid, J. Appl. Phys., Vol. 103, p. 074301.
Hamilton, R. L. and Crosser, O. K. (1962), Thermal conductivity of heterogeneous
two-component systems, Ind. Eng. Chem. Fundamen., Vol. 1, No. 3, pp. 187-
191.
Han, Z. H., Cao, F. Y. and Yang, B. (2008), Synthesis and thermal characterization
of phase-changeable indium/polyalphaolefin nanofluids, Appl. Phys. Lett., Vol.
92, p. 243104.
He, Y., Jin, Y., Chen, H., Ding, Y., Cang, D. and Lu, H. (2007), Heat transfer and
flow behaviour of aqueous suspensions of TiO2 nanoparticles (nanofluids)
flowing upward through a vertical pipe, Int. J. Heat Mass Tran., Vol. 50,
pp. 2272-2281.
Jang, S. P., Lee, J.-H. and Hwang, K. S. (2007a), Particle concentration and tube size
dependence of viscosities of Al 2 O 3 -water nanofluids flowing through micro- and
minitubes, Appl. Phys. Lett., Vol. 91, p. 243112.
Jang, S. P., Hwang, K. S., Lee, J.-H., Kim, J. H., Leeand B. H. and Choi, S. U. S.
(2007b), Effective thermal conductivities and viscosities of water-based
nanofluids containing Al 2 O 3 with low concentration. In Proceedings of the 7th
IEEE International Conference on Nanotechnology, p. 188.
Kleinstreuer, C., Li, J. and Koo, J. (2008), Microfluidics of nano-drug delivery, Int.
J. Heat Mass Tran., Vol. 51, pp. 5590-5597.
Krieger, I. M. and Dougherty, T. J. (1959), A mechanism for non-Newtonian flow in
suspensions of rigid spheres, Trans. Soc. Rheology, Vol. 3, pp. 137-152.
Lee, J.-H., Hwang, K. S., Jang, S. P., Lee, B. H., Kim, J. H., Choi, S. U. S. and Choi,
C. J. (2008), Effective viscosities and thermal conductivities of aqueous
nanofluids containing low volume concentrations of Al 2 O 3 nanoparticles, Int.
J. Heat Mass Tran., Vol. 51, pp. 2651-2656.
Lu, W.-Q. and Fan, Q.-M. (2008), Study for the particle's scale effect on some
thermophysical properties of nanofluids by a simplified molecular dynamics
method, Eng. Anal. Bound. Elem., Vol. 32, pp. 282-289.
Masoumi, N., Sohrabi, N. and Behzadmehr, A. (2009), A new model for calculating
the effective viscosity of nanofluids, J. Phys. D: Appl. Phys., Vol. 42, p. 055501.
Maxwell, J. C. (1773), Treatise on Electricity and Magnetism. Clarendon Press.
Oxford, UK.
Maxwell, J. C. (1904), A Treatise on Electricity and Magnetism, 2nd edn., Oxford
University Press, Oxford, UK.
Murshed, S. M. S., Tan, S. H. and Nguyen, N. T. (2008a), Temperature dependence
of interfacial properties and viscosity of nanofluids for droplet-based
microfluidics, J. Phys. D: Appl. Phys., Vol. 41, pp. 085502(1-5).
Murshed, S. M. S., Leong, K. C. and Yang, C. (2008b), Investigations of thermal
conductivity and viscosity of nanofluids, Int. J. Therm. Sci., Vol. 47, pp. 560-
568.
Namburu, P. K., Kulkarni, D. P., Dandekar, A. and Das, D. K.
￿ ￿ ￿ ￿ ￿ ￿
(2007a),
Search WWH ::




Custom Search