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Keywords: microfluidics
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Journal Articles
Article Type: Research-Article
J. Heat Transfer. August 2020, 142(8): 082505.
Paper No: HT-19-1292
Published Online: June 23, 2020
... than the maximum Péclet number of electro-osmotic microflows. Furthermore, it is shown that smoother distributions of wall heat flux give rise to higher heat transfer rates. The model developed in this study can pave the way for modeling of hotspots in more complicated microfluidic devices...
Journal Articles
Article Type: Research-Article
J. Heat Transfer. September 2015, 137(9): 091010.
Paper No: HT-14-1130
Published Online: September 1, 2015
...] Mohamed , K. M. , and Mohamad , A. A. , 2010 , “ A Review of the Development of Hybrid Atomistic-Continuum Methods for Dense Fluids ,” Microfluid. Nanofluid. , 8 ( 3 ), pp. 283 – 302 . 10.1007/s10404-009-0529-z [6] Li , J. , Liao , D. , and Yip , S. , 1998 , “ Coupling...
Journal Articles
Article Type: Research-Article
J. Heat Transfer. September 2014, 136(9): 091701.
Paper No: HT-13-1636
Published Online: June 24, 2014
... are presented as functions of both the heated perimeter of the cross section and the Knudsen number, resorting to simple converging series of trigonometric functions. The proposed solution can be useful for the design of the microfluidic devices such as micro heat sinks and micro heat exchangers. slip...
Journal Articles
Article Type: Research-Article
J. Heat Transfer. February 2013, 135(2): 022506.
Paper No: HT-12-1148
Published Online: January 4, 2013
.... , 2006 , “Gas Transport Phenomena in Microfluidic Systems,” Ph.D. thesis, Department of Mechanical Engineering, National Cheng Kung University , Taiwan . [26] Surana , K. S. , Allu , S. , Tenpas , P. W. , and Reddy , J. N. , 2007 , “k-Version of Finite Element Method in Gas...
Journal Articles
Article Type: Research-Article
J. Heat Transfer. February 2013, 135(2): 021705.
Paper No: HT-12-1002
Published Online: January 3, 2013
...Ali Jabari Moghadam References [1] Nguyen , N. T. , and Wereley , S. T. , 2006 , Fundamentals and Applications of Microfluidics , Artech House , Boston, MA . [2] Arulanandam , S. , and Li , D. , 2000 , “ Liquid Transport in Rectangular Microchannels by Electroosmotic...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. May 2012, 134(5): 051025.
Published Online: April 13, 2012
...Masahiro Motosuke; Jun Shimakawa; Dai Akutsu; Shinji Honami Optical force offers a promise of being applied as a noninvasive manipulation tool for microscopic objects without physical contact. Particle control in a microfluidic system is achieved by optics showing advantages over electric...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. January 2012, 134(1): 012602.
Published Online: November 29, 2011
... fluidised beds heat pipes heat transfer image reconstruction mesh generation microfluidics permeability pipe flow porosity statistical analysis thermal conductivity porous media effective thermal conductivity permeability microtomography sintered beds heat pipes Sintered copper...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. December 2011, 133(12): 121702.
Published Online: October 6, 2011
.... , and Crawford , M. E. , 2000 , Convective Heat and Mass Transfer , McGraw-Hill , New York . 01 07 2010 18 06 2011 20 06 2011 06 10 2011 06 10 2011 boundary layers heat transfer laminar flow melting microfluidics numerical analysis phase change materials pipe...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. November 2011, 133(11): 111703.
Published Online: September 20, 2011
... Koo , J. , and Kleinstreuer , C. , 2003 , “ Liquid Flow in Microchannels: Experimental Observations and Computational Analyses of Microfluids Effects ,” J. Micromech. Microeng. , 13 ( 5 ), pp. 568 – 579 . 10.1088/0960-1317/13/5/307 6 Koo , J. , and Kleinstreuer , C. , 2004...
Journal Articles
Article Type: Photo Gallery
J. Heat Transfer. August 2011, 133(8): 080905.
Published Online: April 27, 2011
...Jae Bong Lee; Seong Hyuk Lee; Chang Kyoung Choi 27 04 2011 27 04 2011 aluminium contact angle drops flow visualisation high-speed optical techniques hole density hydrophobicity impact (mechanical) microfluidics milling machines surface energy surface roughness surface...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. May 2011, 133(5): 051502.
Published Online: February 3, 2011
... points. The results are given in Table 2 . 13 04 2010 01 12 2010 03 02 2011 03 02 2011 boiling heat transfer microfluidics pipe flow two-phase flow flow boiling R134a microscale Thermal management of electronic devices is one of the major issues facing...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. April 2011, 133(4): 042401.
Published Online: January 6, 2011
... . The effective heat transfer coefficient from the cantilever to the ambient (at atmospheric pressure) is determined to be ≈ 3400 W m − 2 K − 1 . 10 10 2009 14 01 2010 06 01 2011 06 01 2011 cantilevers heat transfer microfluidics thermal conductivity thermal conductance...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. December 2010, 132(12): 121401.
Published Online: September 17, 2010
... the uncertainties by the velocities close to side walls or at the center of the channel. 01 01 2009 22 05 2010 17 09 2010 17 09 2010 entropy flow visualisation heat transfer microfluidics microscale thermal-fluid systems microchannel heatsinks entropy generation measurement...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. October 2010, 132(10): 102401.
Published Online: July 23, 2010
... for Navier-Stokes Equation ,” Europhys. Lett. 0295-5075 , 17 ( 6 ), pp. 479 – 484 . 10.1209/0295-5075/17/6/001 08 05 2008 13 04 2010 23 07 2010 23 07 2010 Boltzmann equation heat transfer microfluidics molecular dynamics method phonons silicon thermal conductivity...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. July 2010, 132(7): 071501.
Published Online: April 28, 2010
... , 46 , pp. 4059 – 4070 . 10.1016/S0017-9310(03)00226-6 02 06 2009 24 11 2009 28 04 2010 28 04 2010 boiling copper dendrites dielectric liquids flow through porous media heat transfer microfluidics nanoporous materials thermal management (packaging) pool...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. July 2010, 132(7): 071301.
Published Online: April 22, 2010
... heat conduction heat pipes microfluidics pipe flow temperature distribution thermal conductivity microheat pipe axial conduction solid wall phase change heat transport capacity Owing to their various applications, either proposed or implemented, microheat pipes (MHPs) have...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. June 2010, 132(6): 062801.
Published Online: March 19, 2010
... computational fluid dynamics microfluidics solid oxide fuel cells heat transfer in fuel cells solid oxide fuel cells computational fluid-dynamics hydrogen Solid oxide fuel cells (SOFCs) are characterized by high conversion efficiency and exhaust temperature making them ideal for combined heat...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. May 2010, 132(5): 054501.
Published Online: March 5, 2010
...Zhefu Wang; Richard B. Peterson This study explores the use of a thermal wave approach for flow field measurement applications, such as flow diagnostics near surfaces and in microfluidic systems. The basic mathematical characteristics of the governing equations of heat convection, with periodic...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. April 2010, 132(4): 041013.
Published Online: February 23, 2010
... , “ Describing Uncertainties in Single-Sample Experiments ,” Mech. Eng. (Am. Soc. Mech. Eng.) 0025-6501 , 75 ( 1 ), pp. 3 – 8 . heat transfer jets Mach number microfluidics electronics cooling microscale jet heat transfer microjet microjet array Heat dissipation in processors...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. April 2010, 132(4): 041011.
Published Online: February 22, 2010
... transfer microfluidics stagnation flow 28 03 2009 06 09 2009 22 02 2010 22 02 2010 2010 American Society of Mechanical Engineers ...