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Keywords: plates (structures)
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Journal Articles
Article Type: Research Papers
J. Heat Transfer. March 2012, 134(3): 031024.
Published Online: January 20, 2012
... exchangers plates (structures) thermal management (packaging) equivalent fin height heat flow choke forced cooled electronic chassis unequal heat loading Interest in the forced cooled electronic chassis or cold plate to provide an acceptable microclimate for electronic components within...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. December 2011, 133(12): 124501.
Published Online: October 12, 2011
... flow numerical analysis plates (structures) vortices microchannel numerical simulation heat transfer CFD LBM Microchannel heat sinks are commonly used heat exchangers and can be found in many engineering fields. There is a great deal of interest in the study of fluid flow and heat...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. December 2011, 133(12): 121502.
Published Online: October 6, 2011
... capillarity contact angle copper diffusion fans flow simulation heat pipes heat transfer organic compounds pipe flow plates (structures) water welding wires mini heat pipe theoretical model microgravity diffusion welding In recent years, electronic component miniaturization...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. December 2011, 133(12): 122501.
Published Online: September 29, 2011
... plates (structures) thermal expansion natural convection vertical plate convective boundary condition internal heat generation There are a number of physical circumstances where the sudden initiation of internal heat generation, in an otherwise forced convective flow over a vertical...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. November 2011, 133(11): 111901.
Published Online: September 16, 2011
... turbulators internal cooling gas turbine cooling heat transfer enhancement channel flow engines gas turbines heat transfer pipe flow plates (structures) turbulence 01 09 2010 16 04 2011 16 09 2011 16 09 2011 For the heat transfer experiment, four silicone heaters...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. September 2011, 133(9): 094501.
Published Online: July 8, 2011
... 2011 boundary layers Brownian motion external flows flow through porous media natural convection plates (structures) free convection flat plate porous medium nanofluid Brownian motion Darcy-Boussinesq model thermophoresis Convective flow in porous media has been...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. May 2011, 133(5): 054501.
Published Online: February 1, 2011
... radiation’s effect occurs. 10 06 2009 04 11 2010 01 02 2011 01 02 2011 boundary layers external flows flow through porous media forced convection heat radiation partial differential equations plates (structures) Transport of heat through a porous medium has been...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. February 2011, 133(2): 021303.
Published Online: November 2, 2010
... materials heat transfer multilayers plates (structures) thermal analysis heat transfer extended surfaces composite patch repair multilayered plates As a second example, we present a repair, which involves bonding a composite patch over a composite panel. The geometry of the repair...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. February 2011, 133(2): 022502.
Published Online: November 2, 2010
... layers convection external flows finite difference methods friction laminar flow magnetohydrodynamics plates (structures) stagnation flow boundary layer dual solutions induced magnetic field MHD mixed convection The case of a steady magnetohydrodynamic (MHD) stagnation point...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. February 2011, 133(2): 021302.
Published Online: November 2, 2010
... 2009 23 09 2010 02 11 2010 02 11 2010 heat transfer Helmholtz equations laminations multilayers plates (structures) temperature distribution heat transfer composite materials multilayered plates first order lamination theory Composite materials have found...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. November 2010, 132(11): 111801.
Published Online: August 10, 2010
... devices plates (structures) perforated plate heat exchanger axial conduction cryogenic MEMS Perforated plate heat exchangers were invented in the 1940s by McMahon et al. ( 1 ) and are often used to provide a compact design for a recuperative heat exchanger in applications where high...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. October 2010, 132(10): 101702.
Published Online: August 3, 2010
... 08 2010 boundary layer turbulence heat transfer mass transfer plates (structures) shear turbulence heat/mass transfer analogy naphthalene sublimation turbulent flow wall motion boundary layer constant temperature constant concentration The heat transfer characteristics...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. March 2010, 132(3): 031502.
Published Online: January 4, 2010
... 2010 capillarity film flow heat pipes pipe flow plates (structures) evaporation condensation flat plate heat pipes thin film capillarity Flat plate heat pipes (FPHPs) are microfluidic devices that are usually designed for thermal management of electronic components ( 1...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. March 2010, 132(3): 032501.
Published Online: December 29, 2009
... conditions and for titanium plate for three different surface conditions. There exists a very good agreement between the results obtained from the experiments and the numerical simulations. 27 03 2009 07 08 2009 29 12 2009 29 12 2009 natural convection plates (structures...
Journal Articles
Article Type: Photo Gallery
J. Heat Transfer. August 2009, 131(8): 080905.
Published Online: May 28, 2009
...C Herman; M Pirtini Çetingül 28 05 2009 heat exchangers heat pumps heat transfer holographic interferometry loudspeakers plates (structures) refrigeration temperature distribution thermoacoustics 2009 American Society of Mechanical Engineers ...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. July 2009, 131(7): 074502.
Published Online: April 30, 2009
... aerodynamics fans heat transfer plates (structures) power electronics axial fan flow hub fins reverse flow impingement heat transfer Among a variety of different cooling schemes, impinging jets are known to be an effective means for achieving desirable high levels of heat dissipation...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. January 2009, 131(1): 011703.
Published Online: October 20, 2008
... in the channel on the other hand, the thermal characteristics of the wavy wall are nearly unaffected. 13 02 2008 14 06 2008 20 10 2008 channel flow finite element analysis forced convection hydrodynamics laminar flow plates (structures) wavy channel forced convection entrance...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. November 2008, 130(11): 114506.
Published Online: September 4, 2008
... 09 2007 04 04 2008 04 09 2008 channel flow heat transfer laminar flow plates (structures) pulsatile flow heat transfer perforated plate alternate crossing of flow numerical simulation blockage factor pulsating Strouhal number Perforated plates may be employed...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. June 2008, 130(6): 064503.
Published Online: May 7, 2008
... 05 2008 plates (structures) proton exchange membrane fuel cells reliability temperature distribution fuel cell contact resistance Considerable progress has been made in developing comprehensive heat and mass transfer models of proton exchange membrane (PEM) fuel cells...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. June 2008, 130(6): 061601.
Published Online: April 23, 2008
... plates (structures) specific heat emissivity specific heat simultaneous estimation Levenberg–Marquardt’s iterative procedure multimode heat transfer The thermophysical properties, specific heat, and emissivity have significant roles in determining the thermal response in numerous...