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Keywords: orifices (mechanical)
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Journal Articles
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. November 2009, 131(11): 111402.
Published Online: August 26, 2009
... 2009 26 08 2009 heat transfer jets micromechanical devices orifices (mechanical) electronics cooling microscale jet heat transfer microjet orifice pressure loss coefficient Due to the increasing power consumption and decreasing size of electronic chips, cooling...
Journal Articles
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. October 2006, 128(10): 990–1000.
Published Online: February 22, 2006
... on the primary parameters of jet motion is characterized over a range of operating conditions. 29 03 2005 22 02 2006 convection plates (structures) cooling jets mass transfer stratified flow orifices (mechanical) laser velocimetry mixing boundary layer turbulence experimental...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. December 2006, 128(12): 1293–1301.
Published Online: February 21, 2006
... coefficient characteristics aided in the evaluation of the dominant heat transfer mechanism under various thermal-hydraulic conditions. 01 09 2005 21 02 2006 cavitation heat transfer microchannel flow hydrodynamics orifices (mechanical) two-phase flow mass transfer flow visualisation...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. March 2006, 128(3): 251–260.
Published Online: September 27, 2005
..., the critical heat flux conditions. A correlation has been developed in terms of M to predict the conditions leading to unstable boiling. 12 05 2005 27 09 2005 boiling two-phase flow fluid oscillations orifices (mechanical) compressible flow flow instability heat transfer mass transfer...
Journal Articles
Publisher: ASME
Article Type: Article
J. Heat Mass Transfer. January 2005, 127(1): 101–107.
Published Online: February 15, 2005
... boiling two-phase flow cooling flow instability orifices (mechanical) This paper will be directed toward microchannels, which invariably involve cooling channels in blocks, as opposed to mini and larger diameter channels that have individual confining walls and are usually thermally well...