Publication Cover
Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 67, 2015 - Issue 5
318
Views
32
CrossRef citations to date
0
Altmetric
Original Articles

Numerical Optimization for Nanofluid Flow in Microchannels Using Entropy Generation Minimization

, &
Pages 571-588 | Received 07 Apr 2014, Accepted 18 Jun 2014, Published online: 10 Dec 2014

REFERENCES

  • H. Y. Wu and P. Cheng , An Experimental Study of Convective Heat Transfer in Silicon Microchannels with Different Surface Conditions , Int. J. Heat Mass Transfer , vol. 46 , pp. 2547 – 2556 , 2003 .
  • H. Y. Wu and P. Cheng , Friction Factors in Smooth Trapezoidal Silicon Microchannels with Different Aspect Ratios , Int. J. Heat Mass Transfer , vol. 46 , pp. 2519 – 2525 , 2003 .
  • J. Koo and C. Kleinstreuer , Viscous Dissipation Effects in Microtubes and Microchannels , Int. J. Heat Mass Transfer , vol. 47 , pp. 3159 – 3169 , 2004 .
  • H. Herwig and S. P. Mahulikar , Variable Property Effects in Single-Phase Incompressible Flows Through Microchannels , Int. J. Thermal Sciences , vol. 45 , pp. 977 – 081 , 2006 .
  • A. Li , X. Huai , Y. Tao , and H. Chen , Effects of Thermal Property Variations on the Liquid Flow and Heat Transfer in Microchannel Heat Sinks , Appl. Therm. Eng. , vol. 27 , pp. 2803 – 2814 , 2007 .
  • D. Liu and S. V. Garimella , Analysis and Optimization of the Thermal Performance of Microchannel Heat Sinks , Int. J. Numer. Methods Heat Fluid Flow , vol. 15 , pp. 7 – 26 , 2005 .
  • A. Husain and K. Y. Kim , Shape Optimization of Micro-Channel Heat Sink for Micro-Electronic Cooling , IEEE Trans. Comp. Packag. Technol. , vol. 31 , pp. 322 – 330 , 2008 .
  • A. Husain and K. Y. Kim , Thermal Optimization of a Micro-Channel Heat Sink with Trapezoidal Cross-Section , J. Electron. Packag. , vol. 131 , pp. 021005 , 2009 .
  • A. Husain and K. Y. Kim , Optimization of a Microchannel Heat Sink with Temperature Dependent Fluid Properties , Appl. Therm. Eng. , vol. 28 , pp. 1101 – 1107 , 2008 .
  • A. Husain and K. Y. Kim , Multiobjective Optimization of a Microchannel Heat Sink Using Evolutionary Algorithm , Trans. ASME, J. Heat Transfer , vol. 130 , pp. 114505 , 2008 .
  • A. Husaina and K. Y. Kim , Enhanced Multi-Objective Optimization of a Microchannel Heat Sink Through Evolutionary Algorithm Coupled with Multiple Surrogate Models , Appl. Therm. Eng. , vol. 30 , pp. 1683 – 1691 , 2010 .
  • C. Kleinstreuer , J. Li , and J. Koo , Microfluidics of Nanodrug Delivery , Int. J. Heat Mass Transfer , vol. 51 , pp. 5590 – 5597 , 2008 .
  • J. Li and C. Kleinstreuer , Thermal Performance of Nanofluid Flow in Microchannels , Int. J. Heat Fluid Flow , vol. 29 , pp. 1221 – 1232 , 2008 .
  • J. Li and C. Kleinstreuer , Entropy Generation Analysis for Nanofluid Flow in Microchannels , Trans. ASME J. Heat Transfer , vol. 132 , pp. 122401 , 2010 .
  • A. S. Tabrizi and H. R. Seyf , Analysis of Entropy Generation and Convective Heat Transfer of Al2O3 Nanofluid Flow in a Tangential Micro Heat Sink , Int. J. Heat Mass Transfer , vol. 55 , pp. 4366 – 4375 , 2012 .
  • W. H. Mah , Y. M. Hung , and N. Guo , Entropy Generation of Viscous Dissipative Nanofluid Flow in Microchannels , Int. J. Heat Mass Transfer , vol. 55 , pp. 4169 – 4182 , 2012 .
  • V. Bianco , S. Nardini , and O. Manca , Enhancement of Heat Transfer and Entropy Generation Analysis of Nanofluids Turbulent Convection Flow in Square Section Tubes , Nanoscale Res. Lett. , vol. 6 , 252 , 2011 .
  • M. Moghaddami , A. Mohammadzade , and S. A. Varzane Esfehani , Second Law Analysis of Nanofluid Flow, Energy Convers. Manage. , vol. 52, pp. 1397–1405, 2011.
  • M. Moghaddami , S. E. Shahidi , and M. Siavashi , Entropy Generation Analysis of Nanofluid Flow in Turbulent and Laminar Regimes , J. Comput. Theor. Nanosci. , vol. 9 , pp. 1 – 10 , 2012 .
  • M. Shahi , A. H. Mahmoudi , and A. H. Raouf , Entropy Generation Due to Natural Convection Cooling of a Nanofluid , Int. Commun. Heat Mass Transfer , vol. 38 , pp. 972 – 983 , 2011 .
  • A. H. Mahmoudi , M. Shahi , and F. Talebi , Entropy Generation Due to Natural Convection in a Partially Open Cavity with a Thin Heat Source Subjected to a Nanofluid , Numer. Heat Transfer A , vol. 61 , pp. 283 – 305 , 2012 .
  • R. Chein and J. Chuang , Analysis of Microchannel Heat Sink Performance Using Nanofluids , Appl. Therm. Eng. , vol. 25 , pp. 3104 – 3114 , 2005 .
  • S. Z. Heris , S. Gh. Etemad , and M. N. Esfahany , Experimental Investigation of Oxide Nanofluids Laminar Flow Convective Heat Transfer , Int. Commun. Heat Mass Transfer , vol. 33 , pp. 529 – 535 , 2006 .
  • S. P. Jang and S. U. S. Choi , Cooling Performance of a Microchannel Heat Sink with Nanofluids , Appl. Therm. Eng. , vol. 26 , pp. 2457 – 2463 , 2006 .
  • J. Li and C. Kleinstreuer , Microfluidics Analysis of Nanoparticle Mixing in a Microchannel System , Microfluid. Nanofluid. , vol. 6 , pp. 661 – 668 , 2009 .
  • C. Kleinstreuer and J. Li , Microscale Cooling Devices , in D. Li (ed.), Encyclopedia of Micro and Nanofluidics , Springer-Verlag , Heidelberg , Germany , 2008 .
  • M. K. Moraveji and M. Hejazian , Modeling of Turbulent Forced Convective Heat Transfer and Friction Factor in a Tube for Fe3 O 4 Magnetic Nanofluid with Computational Fluid Dynamics , Int. Commun. Heat Mass Transfer , vol. 39 , no. 8 , pp. 1293 – 1296 , 2012 .
  • R. M. Moghari , A. Akbarinia , M. Shariat , F. Talebi , and R. Laur , Two Phase Mixed Convection Al2O3–Water Nanofluid Flow in an Annulus , Int. J. Multiphase Flow , vol. 37 , pp. 585 – 595 , 2011 .
  • S. V. Patankar , Numerical Heat Transfer and Fluid Flow , McGraw-Hill , New York , 1980 .
  • G. E. P. Box and N. R. Draper , Empirical Model-Building and Response Surface , John Wiley and Sons, Inc. , New York , 1987 .
  • GA (Genetic Algorithm) Funcion of MATLAB User Manual, Version 6.5 Release 13, The MathWorks, Inc., 2002.
  • Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/unht.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.