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[해외논문] Single-phase and two-phase cooling using hybrid micro-channel/slot-jet module

International journal of heat and mass transfer, v.51 no.15/16, 2008년, pp.3825 - 3839  

Sung, M.K. ,  Mudawar, I.

Abstract AI-Helper 아이콘AI-Helper

This paper explores the single-phase and two-phase cooling performance of a hybrid micro-channel/slot-jet module using HFE-7100 as working fluid. Three-dimensional numerical simulation using the k-ε turbulent model is used to both assess the single-phase performance and seek a geometry that enh...

참고문헌 (33)

  1. IEEE Trans. Compon. Pack. Technol. Mudawar 24 122 2001 10.1109/6144.926375 Assessment of high-heat-flux thermal management schemes 

  2. IEEE Electron. Dev. Lett. Tuckerman 2 126 1981 10.1109/EDL.1981.25367 High-performance heat sinking for VLSI 

  3. Int. J. Heat Mass Transfer Bowers 37 321 1994 10.1016/0017-9310(94)90103-1 High flux boiling in low flow rate, low pressure drop mini-channel and micro-channel heat sinks 

  4. Int. J. Heat Mass Transfer Lelea 47 4215 2004 10.1016/j.ijheatmasstransfer.2003.11.034 The experimental research on micro-tube heat transfer and fluid flow of distilled water 

  5. Int. J. Heat Mass Transfer Fedorov 43 399 2000 10.1016/S0017-9310(99)00151-9 Three-dimensional conjugate heat transfer in the microchannel heat sink for electronic packaging 

  6. Int. J. Heat Mass Transfer Qu 45 2549 2002 10.1016/S0017-9310(01)00337-4 Experimental and numerical study of pressure drop and heat transfer in a single-phase micro-channel heat sink 

  7. ASME J. Heat Transfer Kim 121 639 1999 10.1115/1.2826027 forced convection in microstructures for electronic equipment cooling 

  8. Numer. Heat Transfer Ambatipudi 37 711 2000 10.1080/104077800274046 Analysis of conjugate heat transfer in microchannel heat sinks 

  9. Int. J. Heat Mass Transfer Qu 46 2737 2003 10.1016/S0017-9310(03)00044-9 Measurement and prediction of pressure drop in two-phase micro-channel heat sinks 

  10. Int. J. Heat Mass Transfer Lee 928 2005 10.1016/j.ijheatmasstransfer.2004.09.018 Two-phase flow in high-heat-flux micro-channel heat sink for refrigeration cooling applications: Part I - pressure drop characteristics 

  11. Int. J. Heat Mass Transfer Qu 47 2045 2004 10.1016/j.ijheatmasstransfer.2003.12.006 Measurement and correlation of critical heat flux in two-phase micro-channel heat sinks 

  12. Int. J. Heat Mass Transfer Peng 36 3421 1993 10.1016/0017-9310(93)90160-8 Forced convection and flow boiling heat transfer for liquid flowing through microchannels 

  13. ASME J. Heat Transfer Steinke 126 518 2004 10.1115/1.1778187 An experimental investigation of flow boiling characteristics of water in parallel microchannels 

  14. Adv. Heat Transfer Martin 13 1 1977 10.1016/S0065-2717(08)70221-1 Heat and mass transfer between impinging gas jets and solid surfaces 

  15. L.M. Jiji, Z. Dagan, Experimental investigation of single-phase multi-jet impingement cooling of array of microelectronic heat sources, in: Proceedings of International Symposium on Cooling Technology for Electronic Equipment, Honolulu, HI, 1987, pp. 265-283. 

  16. S.J. Downs, E.H. James, Jet impingement heat transfer - a literature survey, Paper No. 87-HT-35, ASME, New York, NY, 1987. 

  17. ASME J. Heat Transfer Wadsworth 112 891 1990 10.1115/1.2910496 Cooling of a multichip electronic module by means of confined two-dimensional jets of dielectric liquid 

  18. Int. J. Heat Mass Transfer Craft 36 2685 1993 10.1016/S0017-9310(05)80205-4 Impinging jet studies for turbulence model assessment - II. An examination of the performance of four turbulence models 

  19. Appl. Therm. Eng. Baydar 25 409 2005 10.1016/j.applthermaleng.2004.05.016 An experimental and numerical investigation on a confined impinging air jet at high Reynolds numbers 

  20. Int. J. Heat Mass Transfer Park 46 251 2003 10.1016/S0017-9310(02)00270-3 Streamline upwind numerical simulation of two-dimensional confined impinging slot jets 

  21. Bull. JSME Katto 16 1357 1973 10.1299/jsme1958.16.1357 Study of the mechanism of burn-out in boiling system of high burn-out heat flux 

  22. Int. J. Heat Mass Transfer Ma 29 1095 1986 10.1016/0017-9310(86)90140-7 Jet impingement nucleate boiling 

  23. Int. J. Heat Mass Transfer Mudawar 34 1465 1991 10.1016/0017-9310(91)90289-Q Critical heat flux from a simulated chip to a confined rectangular impinging jet of dielectric liquid 

  24. ASME J. Electron. Pack. Estes 117 323 1995 10.1115/1.2792112 Comparison of two-phase electronic cooling using free jets and sprays 

  25. ASME J. Electron. Pack. Johns 118 264 1996 10.1115/1.2792162 An ultra-high power two-phase jet-impingement avionic clamshell module 

  26. Int. J. Heat Mass Transfer Sung 49 669 2006 Experimental and numerical investigation of single-phase heat transfer using a hybrid jet impingement/micro-channel cooling scheme 

  27. Int. J. Heat Mass Transfer Sung 49 2663 2006 10.1016/j.ijheatmasstransfer.2006.01.008 Correlation of critical heat flux in hybrid jet impingement/micro-channel cooling scheme 

  28. M.K. Sung, I. Mudawar, Low temperature hybrid micro-channel/micro-jet impingement cooling - selection of cooling geometry and correlation of single-phase data, Int. J. Heat Mass Transfer, in press. 

  29. 10.1016/j.ijheatmasstransfer.2007.12.016 M.K. Sung, I. Mudawar, Single-phase and two-phase heat transfer characteristics of low temperature hybrid micro-channel/micro-jet impingement cooling, Int. J. Heat Mass Transfer, in press. 

  30. Fluent 6.2.16 User’s Guide, Fluent Inc., Lebanon, NH, 2005. 

  31. Gambit 2.2.30 User’s Guide, Fluent Inc., Lebanon, NH, 2006. 

  32. Comput. Meth. Appl. Mech. Eng. Launder 3 269 1974 10.1016/0045-7825(74)90029-2 The numerical computation of turbulent flows 

  33. Patankar 1980 Numerical Heat Transfer and Fluid Flow 

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