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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 66, 2014 - Issue 3
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Original Articles

Optimization of Design Parameters for a Sandwich-Distribution Porous-Microchannel Heat Sink

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Pages 229-251 | Received 27 Apr 2013, Accepted 23 Nov 2013, Published online: 09 May 2014

REFERENCES

  • R. Singh , A. Akbarzadeh , and M. Mochizuki , Sintered Porous Heat Sink for Cooling of High-Powered Microprocessors for Server Applications , Int. J. of Heat and Mass Transfer , vol. 52 , pp. 2289 – 2299 , 2009 .
  • N. Yucel and R. T. Guven , Numerical Study of Heat Transfer in a Rectangular Channel with Porous Covering Obstacles , Transport Porous Media , vol. 77 , pp. 41 – 58 , 2009 .
  • Y. Ould-Amer , S. Chikh , K. Bouhadef , and G. Lauriat , Forced Convection Cooling Enhancement by use of Porous Materials , Int. J. of Heat and Fluid Flow , vol. 19 , no. 3 , pp. 251 – 258 , 1998 .
  • A. Haji-Sheikh , D. A. Nield , and K. Hooman , Heat Transfer in the Thermal Entrance Region for Flow Through Rectangular Porous Passages , Int. J. of Heat and Mass Transfer , vol. 49 , pp. 3004 – 3015 , 2006 .
  • S. C. Tzeng and T. M. Jeng , Interstitial Heat Transfer Coefficient and Dispersion Conductivity in Compressed Metal Foam Heat Sinks , ASME J. Electron. Pack , vol. 129 , pp. 113 – 114 , 2007 .
  • K. Hooman , Heat and Fluid Flow in a Rectangular Microchannel Filled with a Porous Medium , Int. J. of Heat and Mass Transfer , vol. 51 , pp. 5804 – 5810 , 2008 .
  • C. G. Aguilar-Madera , F. J. Valdés-Parada , B. Goyeau , and J. A. Ochoa-Tapia , Convective Heat Transfer in a Channel Partially Filled with a Porous Medium , Int. J. of Thermal Sciences , vol. 50 , pp. 1355 – 1368 , 2011 .
  • I. A. Badruddin , A. A. Al-Rashed , N. J. Salman Ahmed , and S. Kamangar , Investigation of Heat Transfer in Square Porous-Annulus , Int. J. of Heat and Mass Transfer , vol. 55 , pp. 2184 – 2192 , 2012 .
  • G. Hetsroni , M. Gurevich , and R. Rozenblit , Sintered Porous Medium Heat Sink for Cooling of High-Power Mini-Devices , Int. J. of Heat and Fluid Flow , vol. 27 , pp. 259 – 266 , 2006 .
  • S. C. Tzeng , W. Y. Jywe , C. W. Lin , and Y. C. Wang , Mixed Convection Heat-Transfers in a Porous Channel with Sintered Copper Beads , Appl. Energy , vol. 81 , no. 1 , pp. 19 – 31 , 2005 .
  • G. Venugopal , C. Balaji , and S. P. Venkateshan , Experimental Study of Mixed Convection Heat Transfer in a Vertical duct Filled with Metallic Porous Structures, Int. J. of Thermal Sciences , vol. 49, pp. 340–348, 2010.
  • P. X. Jiang , L. Meng , T. J. Lu , L. Yu , and Z. P. Ren , Experimental Research on Convection Heat Transfer in Sintered Porous Plate Channels , Int. J. of Heat and Mass Transfer , vol. 47 , nos. 10–11 , pp. 2085 – 2096 , 2004 .
  • P. X. Jiang , M. Li , Y. C. Ma , and Z. P. Ren , Boundary Conditions and Wall Effect for Forced Convection Heat Transfer in Sintered Porous Plate Channels , Int. J. of Heat and Mass Transfer , vol. 47 , nos. 10–11 , pp. 2073 – 2083 , 2004 .
  • V. V. Calmidi and R. L. Mahajan , Forced Convection in High Porosity Metal Foams , ASME J. Heat Transfer , vol. 122 , pp. 557 – 565 , 2000 .
  • A. Zehforoosh and S. Hossainpour , Numerical Investigation of Pressure Drop Reduction Without Surrendering Heat Transfer Enhancement in Partially Porous Channel , Int. J. of Thermal Sciences , vol. 49 , pp. 1649 – 1662 , 2010 .
  • T. M. Jeng , S. C. Tzeng , and F. Z. Tang , Fluid Flow and Heat Transfer Characteristics of the Porous Metallic Heat Sink with a Conductive Cylinder Partially Filled in a Rectangular Channel , Int. J. of Heat and Mass Transfer , vol. 53 , pp. 4216 – 4227 , 2010 .
  • Y. T. Yang and C. Z. Hwang , Calculation of Turbulent Flow and Heat Transfer in Aporous-Baffled Channel , Int. J. of Heat and Mass Transfer , vol. 46 , no. 5 , pp. 771 – 780 , 2003 .
  • T. C. Hung , Y. X. Huang , and W. M. Yan , Thermal Performance Analysis of Porous-Microchannel Heat Sinks with Different Porous Configuration Designs , Int. J. of Heat and Mass Transfer , vol. 66 , pp. 235 – 243 , 2013 .
  • M. H. Chang and C. H. Cheng , Non-Destructive Inverse Method for Determination of Irregular Internal Temperature Distribution in PEMFCs , J. of Power Source , vol. 142 , pp. 200 – 210 , 2005 .
  • C. H. Cheng and M. H. Chang , A Simplified Conjugate-Gradient Method for Shape Identification based on Thermal Data , Numer. Heat Transfer, Part B , vol. 43 , pp. 489 – 507 , 2003 .
  • T. C. Hung , W. M. Yan , X. D. Wang , and Y. X. Huang , Optimal Design of Geometric Parameters of Double-Layered Microchannel Heat Sinks , Int. J. of Heat and Mass Transfer , vol. 55 , pp. 3262 – 3272 , 2012 .
  • T. C. Hung and W. M. Yan , Optimization of a Microchannel Heat Sink with Varying Channel Heights and Widths , Numer. Heat Transfer A , vol. 62 , pp. 722 – 741 , 2012 .
  • S. V. Patankar , Numerical Heat Transfer and Fluid Flow , Hemisphere , New York , 1980 .
  • Z. M. Wan , J. Liu , K. L. Su , X. H. Hu , and S. S. M , Flow and Heat Transfer in Porous Micro Heat Sink for Thermal Management of High Power LEDs , Microelectronics J. , vol. 42 , pp. 632 – 637 , 2011 .
  • T. C. Hung and W. M. Yan , Thermal Performance Enhancement of Microchannel Heat Sinks with Sintered Porous Media , Numerical Heat Transfer A , vol. 63 , pp. 666 – 686 , 2013 .
  • X. D. Wang , Y. X. Huang , C. H. Cheng , J. Y. Jang , D. J. Lee , W. M. Yan , and A. Su , An Inverse Geometry Design Problem for Optimization of Single Serpentine Flow Field of PEM Fuel Cell , Int. J. of Hydrogen Energy , vol. 35 , pp. 4247 – 4257 , 2010 .
  • C. J. Ho , L. C. Wei , and Z. W. Li , An Experimental Investigation of Forced Convective Cooling Performance of a Minichannel Heat Sink with Al2O3/Water Nanofluid , Appl. Thermal Eng. , vol. 30 , pp. 96 – 103 , 2010 .
  • C. J. Ho and W. C. Chen , An Experimental Study on Thermal Performance of Al2O3/Water Nanofluid in a Minichannel Heat Sink , Appl. Thermal Eng. , vol. 50 , pp. 516 – 522 , 2013 .
  • J. Lee and I. Mudawar , Assessment of the Effectiveness of Nanofluids for Single Phase and Two Phase Heat Transfer in Micro-Channels, Int. J. of Heat Mass Transfer , vol. 50, pp. 452–463, 2007.
  • R. W. Knight , D. J. Hall , J. S. Goodling , and R. C. Jaeger , Heat Sink Optimization with Application to Micro Channels , IEEE Trans. on Components Hybrids and Manufacturing Tech. , vol. 15 , pp. 832 – 842 , 1992 .
  • S. Ergun , Fluid Flow Through Packed Columns , Chem. Eng. Progress , vol. 48 , pp. 89 – 94 , 1952 .
  • Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/unht.

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