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Keywords: slip flow
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Journal Articles
Journal:
Journal of Applied Mechanics
Publisher: ASME
Article Type: Research Papers
J. Appl. Mech. July 2010, 77(4): 041010.
Published Online: April 12, 2010
... Slip Flow Model in Rectangular Microchannels ,” Heat Transfer Eng. 0145-7632 , 25 ( 3 ), pp. 23 – 30 . 10.1080/01457630490280047 Gad-el-Hak , M. , 1999 , “ The Fluid Mechanics of Microdevices—The Freeman Scholar Lecture ,” ASME J. Fluids Eng. 0098-2202 , 121 , pp. 5 – 33 . 10.1115...
Journal Articles
Journal:
Journal of Applied Mechanics
Publisher: ASME
Article Type: Research Papers
J. Appl. Mech. July 2008, 75(4): 041001.
Published Online: May 9, 2008
... 2008 Bessel functions flow instability rheology slip flow parallel-disk viscometer wall slip slow viscous flow Navier slip law Bessel series The parallel-disk viscometer is employed by rheologists to measure the shear properties of a wide range of fluids. In a typical steady...
Journal Articles
Journal:
Journal of Applied Mechanics
Publisher: ASME
Article Type: Technical Briefs
J. Appl. Mech. January 2008, 75(1): 014506.
Published Online: February 6, 2008
.... The influence of the rarefaction for the pressure gradient varied for the four cases. 08 03 2005 25 04 2007 06 02 2008 boundary layer turbulence Knudsen flow microchannel flow rarefied fluid dynamics slip flow microfluidics slip-flow unsteady flow Knudsen number...
Journal Articles
Journal:
Journal of Applied Mechanics
Publisher: ASME
Article Type: Technical Papers
J. Appl. Mech. March 2006, 73(2): 291–299.
Published Online: July 25, 2005
... the domain in all cases. 10 09 2004 25 07 2005 sheet materials non-Newtonian fluids calenders viscoplasticity lubrication yield stress slip flow non-Newtonian flow The calendering process is used in a variety of industries, including those of paper, plastics and rubber...
Journal Articles
Journal:
Journal of Applied Mechanics
Publisher: ASME
Article Type: Technical Papers
J. Appl. Mech. March 2002, 69(2): 189–194.
Published Online: September 6, 2001
...C. Y. Wang, Professor, The radially symmetric, steady, slow viscous slip flow through a curved duct of rectangular cross section is studied. The Stokes equation is solved using eigenfunction expansions and Navier’s slip condition. As slip is increased, the location of the maximum velocity moves...