Author:
Bilal S.,Asadullah ,Malik M. Y.
Publisher
Springer Science and Business Media LLC
Reference76 articles.
1. S.U. Choi, J.A. (1995). Eastman, Enhancing thermal conductivity of fluids with nanoparticles. No. ANL/MSD/CP-84938; CONF-951135-29. Argonne National Lab. (ANL), Argonne, IL, United States.
2. Das, S. K., Putra, N., & Roetzel, W. (2003). Pool boiling characteristics of nano-fluids. International Journal of Heat and Mass Transfer, 46, 851–862.
3. Hwang, Y., Ahn, Y., Shin, H., Lee, C., Kim, G., & Park, H. (2006). Investigation on characteristics of thermal conductivity enhancement of nanofluids. Current Applied Physics, 6, 1068–1071.
4. Aravind, S. S. J., Baskar, P., Baby, T. T., Sabareesh, R. K., Das, S., & Ramaprabhu, S. (2011). Investigation of structural stability, dispersion, viscosity, and conductive heat transfer properties of functionalized carbon nanotube based nanofluids. The Journal of Physical Chemistry C, 115(34), 16737–16744.
5. Aravind, S. J., Baskar, P., Baby, T. T., Sabareesh, R. K., Das, S., & Ramaprabhu, S. (2011). Investigation of structural stability, dispersion, viscosity, and conductive heat transfer properties of functionalized carbon nanotube based nanofluids. Journal of Physics Chemical C, 115, 16737–16744.
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