Myung K. Sung, Ph.D.

Affiliations: 
2008 Mechanical Engineering Purdue University, West Lafayette, IN, United States 
Area:
Mechanical Engineering
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"Myung Sung"

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Issam Mudawar grad student 2008 Purdue
 (Low temperature hybrid micro-channel/micro-jet impingement cooling.)
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Publications

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Sung MK, Mudawar I. (2009) Single-Phase and two-phase hybrid cooling schemes for high-heat-flux thermal management of defense electronics Journal of Electronic Packaging, Transactions of the Asme. 131: 0210131-02101310
Sung MK, Mudawar I. (2009) CHF determination for high-heat flux phase change cooling system incorporating both micro-channel flow and jet impingement International Journal of Heat and Mass Transfer. 52: 610-619
Sung MK, Mudawar I. (2009) Effects of jet pattern on two-phase performance of hybrid micro-channel/micro-circular-jet-impingement thermal management scheme International Journal of Heat and Mass Transfer. 52: 3364-3372
Sung MK, Mudawar I. (2008) Single-phase hybrid micro-channel/micro-jet impingement cooling International Journal of Heat and Mass Transfer. 51: 4342-4352
Sung MK, Mudawar I. (2008) Effects of jet pattern on single-phase cooling performance of hybrid micro-channel/micro-circular-jet-impingement thermal management scheme International Journal of Heat and Mass Transfer. 51: 4614-4627
Sung MK, Mudawar I. (2008) Single-phase and two-phase heat transfer characteristics of low temperature hybrid micro-channel/micro-jet impingement cooling module International Journal of Heat and Mass Transfer. 51: 3882-3895
Sung MK, Mudawar I. (2008) Single-phase and two-phase cooling using hybrid micro-channel/slot-jet module International Journal of Heat and Mass Transfer. 51: 3825-3839
Sung MK, Mudawar I. (2006) Correlation of critical heat flux in hybrid jet impingement/micro-channel cooling scheme International Journal of Heat and Mass Transfer. 49: 2663-2672
Sung MK, Mudawar I. (2006) Experimental and numerical investigation of single-phase heat transfer using a hybrid jet-impingement/micro-channel cooling scheme International Journal of Heat and Mass Transfer. 49: 682-694
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