181
Views
5
CrossRef citations to date
0
Altmetric
Original Articles

Single-Phase Laminar-Flow Heat Transfer and Two-Phase Oscillating-Flow Heat Transport in Microchannels

Pages 31-43 | Published online: 17 Aug 2010

REFERENCES

  • Nishio , S. 2003 . Connotation of Micro Thermal Systems . Trans. JSME (Series B) , vol. 69 : pp. 535 – 540 . (in Japanese)
  • Cahill , D. C. , Goodson , K. and Majumdar , A. 2002 . Thermometry and Thermal Transport in Micro/Nanoscale Solid-State Devices and Structures . ASME J. Heat Transfer , vol. 124 : pp. 223 – 241 .
  • Little , W. A. 1984 . Microminiature Refrigeration . Rev. Sci. Instrum , vol. 55 : pp. 661 – 680 .
  • Nishio , S. 2003 . “ Performance Comparison of Single-Phase Forced-Oscillating-Flow Heat-Pipes ” . In Proc. 6th ASME/JSME Thermal Engineering Joint Conference Hawaii AJ03–162
  • Flik , M. I. , Choi , B. I. and Goodson , K. E. 1991 . “ Heat Transfer Regimes in Microstructures ” . In Micromechanical Sensors, Actuators, and Systems , pp. 15 – 30 . ASME .
  • Katto , Y. 1964 . Introduction to Heat Transfer Yohkendo, Tokyo
  • Hadjiconstantinou , N. G. and Simek , O. 2002 . Constant-Wall-Temperature Nusselt Number in Micro and Nano-Channels . ASME J. Heat Transfer , vol. 124 : pp. 356 – 364 .
  • Ho , C. M. and Tai , Y. C. 1998 . Micro-Electro-Mechanical Systems (MEMS) and Fluid Flows . Annu. Rev. Fluid Mech. , vol. 30 : pp. 579 – 612 .
  • Palm , B. 2000 . “ Heat Transfer in Microchannels ” . In Heat Transfer and Transport Phenomena in Microscale , pp. 54 – 64 . New York : Begell House, Inc. .
  • Harms , T. M. , Kazmierczak , M. J. and Gerner , F. M. 1999 . Developing Convective Heat Transfer in Deep Rectangular Microchennels . Int. J. Heat Fluid Flow , vol. 20 : pp. 149 – 157 .
  • Mala , G. M. and Li , D. 1999 . Flow Characteristics of Water in Microtubes . Int. J. Heat Fluid Flow , vol. 20 : pp. 142 – 148 .
  • Choi , S. B. , Barron , R. F. and Warrington , R. O. 1991 . “ Fluid Flow and Heat Transfer in Microtubes ” . In Micromechanical Sensors. Actuators and Systems , pp. 123 – 134 . ASME .
  • Tso , C. P. and Mahulikar , S. P. 1998 . The Use of the Brinkman Number for Single Phase Forced Convective Heat Transfer in Microchannels . Int. J. Heat and Mass Transfer , vol. 41 : pp. 1759 – 1769 .
  • Tso , C. P. 1999 . and Mahulikar, The Role of the Brinkman Number in Analyzing Flow Transition in Microchannels . Int. J. Heat and Mass Transfer , vol. 42 : pp. 1813 – 1833 .
  • Tso , C. P. 2000 . and Mahulikar, Experimental Verification of the Role of Brinkman Number in Microchannels Using Local Parameters . Int. J. Heat and Mass Transfer , vol. 43 : pp. 1837 – 1849 .
  • Koplik , J. 1995 . Continuum Deduction from Molecular Hydrodynamics . Annu. Rev. Fluid Mech. , vol. 27 : pp. 257 – 292 .
  • Tuckerman , D. B. and Pease , R. F. 1981 . High-Performance Heat Sinking for VLSI. . IEEE Elec. Dev. Lett. , vol. EDL-2 : pp. 126 – 129 .
  • Kim , S. J. and Kim , D. 1999 . Forced Convection in Microstructures for Electronic Equipment Cooling . ASME J. Heat Transfer , vol. 121 : pp. 639 – 645 .
  • Nishio , S. 2000 . “ Attempts to Apply Micro Heat Transfer to Thermal Management ” . In Heat Transfer and Transport Phenomena in Microscale , pp. 32 – 40 . New York : Begell House Inc. .
  • Potash , M. Jr. and Wayner , P. C. 1972 . Evaporation from a Two-Dimensional Extended Meniscus . Int. J. Heat and Mass Transfer , vol. 15 : pp. 1851 – 1863 .
  • Carey , V. P. 1992 . Liquid-Vapor Phase-Change Phenomena , New York : Hemisphere Pub. Co. .
  • Nikolayev , V. S. , Beysens , D. A. , Lagier , G.-L. and Hagseth , J. 2001 . Growth of a Dry Spot under a Vapor Bubble at High Heat Flux and High Pressure . Int. J. Heat and Mass Transfer , vol. 44 : pp. 3499 – 3511 .
  • Stephan , P. C. and Busse , C. A. 1992 . Analysis of the Heat Transfer Coefficient of Grooved Heat Pipe Evaporator Wall . Int. J. Heat and Mass Transfer , vol. 35 : pp. 383 – 391 .
  • Zuber , N. 1959 . “ Hydrodyanmic Aspects of Boiling Heat Transfer ” . In AECU-4439 , U.S. Atomic Energy Commission .
  • Swift , G. W. 1988 . Thermoacoustic Engines . J. Acoust. Soc. Am. , vol. 84 : pp. 1145 – 1180 .
  • Nishio , S. , Shi , X.-H. and Zhang , W.-M. 1998 . Oscillation-Induced Heat Transport (Heat Transport Characteristics along Liquid-Columns of Oscillation-Controlled Heat Transport Tubes) . Int. J. Heat & Mass Transfer , vol. 38 : pp. 2457 – 2470 .
  • Kurzweg , U. H. and de Zhao , L. 1984 . Heat Transfer by High-Frequency Oscillations: A New Hydrodynamic Technique for Achieving Large Effective Thermal Conducitivities . Phys. Fluids , vol. 27 : pp. 2624 – 2627 .
  • Swift , G. W. 1995 . Thermoacoustic Engines and Refrigerators . Physics Today , : pp. 22 – 28 .
  • Asai , A. 1989 . Application of the Nucleation Theory to the Design of Bubble Jet Printer . Jap. J. of Appl. Physics , vol. 28 : pp. 909 – 915 .
  • Fichtner , M. , Brabdner , J. , Linder , G. and Schnygulla , U. 2000 . “ Microstructure Devices for Application in Thermal and Chemical Process Engineering ” . In Heat Transfer and Transport Phenomena in Microscale , pp. 41 – 53 . New York : Begell House Inc. .
  • Nishio , S. , Nagata , S. , Baba , S. and Shirakashi , R. 2002 . “ Thermal Performance of SEMOS Heat Pipes ” . In Proc. 12th International Heat Transfer Conference pp. 477 – 482 . Grenoble
  • Hosoda , M. , Nishio , S. and Shirakashi , R. 1999 . “ Meandering Closed-Loop Heat Transport Tube (Propagation Phenomena of Vapor Plug) ” . In Proc. 5th ASME/JSME Joint Thermal Engineering Conference San Diego No. AJTE99–6306
  • Peterson , G. P. 1994 . An Introduction to Heat Pipes , New York : John Wiley & Sons, Inc. .
  • Peng , X. F. and Peterson , G. P. 1995 . The Effect of Thermofluid and Geometrical Parameters on Convection of Liquid through Conventional Micro Channel . Int. J. Heat and Mass Transfer , vol. 38 : pp. 127 – 137 .
  • Peng , X. F. and Peterson , G. P. 1996 . Forced Convection Heat Transfer of Single-Phase Binary Mixtures through Microchannels . Experimental Thermal and Fluid Science , vol. 12 : pp. 98 – 104 .
  • Peng , X. F. and Peterson , G. P. 1996 . Convective Heat Transfer and Flow Friction for Water Flow in Microchannel Structures . Int. J. of Heat and Mass Transfer , vol. 39 : pp. 2599 – 2608 .
  • Mala , G. M. , Li , D. , Werner , C. , Jacobasch , H. J. and Ning , Y. B. 1997 . Flow Characteristics of Water through a Microchannel between Two Parallel Plates with Electrokinetic Effects . Int. J. Heat and Fluid Flow , vol. 18 : pp. 489 – 496 .
  • Qu , W. , Mala , G. M. and Li , D. 2000 . Heat Transfer for Water Flow in Trapezoidal Silicon Microchannels . Int. J. of Heat and Mass Transfer , vol. 43 : pp. 3925 – 3936 .
  • Celata , G. P. , Cumo , M. , Guglielmi , M. and Zummo , G. 2000 . “ Experimental Investigation of Hydraulic and Single Phase Heat Transfer in 0.130 mm Capillary Tube ” . In Heat Transfer and Transport Phenomena in Microscale , pp. 108 – 113 . New York : Begell House Inc. .
  • Judy , J. , Maynes , D. and Web , W. B. 2000 . “ Liquid Flow Pressure Drop in Microtubes ” . In Heat Transfer and Transport Phenomena in Microscale , pp. 149 – 154 . New York : Begell House Inc. .
  • Li , Z. X. , Du , D. X. and Guo , Z. Y. 2000 . “ Experimental Study on Flow Characteristics of Liquid in Circular Micortubes ” . In Heat Transfer and Transport Phenomena in Microscale , pp. 162 – 167 . New York : Begell House Inc. .
  • Yang , C. Y. , Chien , H. T. , Lu , S. R. and Shyu , R. J. 2000 . “ Friction Characteristics of Water, R-134a and Air in Small Tubes ” . In Heat Transfer and Transport Phenomena in Microscale , pp. 168 – 174 . New York : Begell House Inc. .
  • Gao , P. , Person , S. and Marinet , M. 2002 . “ Hydrodynamics and Heat Transfer in a Two-dimensional Microchannel ” . In Proc. 12th Int. Heat Transfer Conference Grenoble, , France
  • Agostini , B. , Watel , B. , Bontemps , A. and Thonon , B. 2002 . “ Experimental Study of Single-Phase Friction Factor and Heat Transfer Coefficient in Mini-Channels ” . In Int. Symp. on Compact Heat Exchangers Grenoble, , France
  • Lelea , D. , Nishio , S. and Takano , K. The Experimental Research on Microtube Heat Transfer and Fluid Flow Characteristics of Distilled Water . Int. J. Heat and Mass Transfer , at press
  • Shah , R. K. and London , A. L. 1978 . “ Laminar Flow Forced Convection in Ducts ” . In Advances in Heat Transfer, Supplement 1 , New York : Academic Press .
  • Akachi , H. 1990 . Structure of a Heat Pipe, U.S. Patent 4,921,041
  • Nishio , S. 1999 . “ Oscillatory-Flow Heat-Transport Device (Forced Oscillatory Flow Type and Bubble Driven Type) ” . In Preprints of 11th International Heat Pipe Conference pp. 39 – 49 . Tokyo
  • Miyazaki , Y. 2002 . Study on Oscillating Heat Pipe (Pressure Oscillation and Heat Transport) . The 39th National Heat Transfer Symposium of Japan , D142 (in Japanese)
  • Kitajima , J. , Ito , Y. and Nagasaki , T. 2002 . Study on Looped Heat Pipe with Non-uniform Cross Section . The 39th National Heat Transfer Symposium of Japan , D143 (in Japanese)
  • Murakami , M. , Inoue , T. and Suzuki , Y. 2002 . Experimental Study on Self-Excited Oscillating Heat Pipe for Space Application . The 39th National Heat Transfer Symposium of Japan , D145 (in Japanese)
  • Nishio , S. , Nagata , S. and Kubota , T. 2002 . Study of Thermal Performance of SEMOS Heat Pipe . The 39th National Heat Transfer Symposium of Japan , D122 (in Japanese)

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.