Development Length in Planar Channel Flows of Newtonian Fluids Under the Influence of Wall Slip
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João M. Nóbrega | Fernando T. Pinho | Manuel A. Alves | Alexandre Afonso | J. M. Nóbrega | Luís Jorge Lima Ferrás | L. L. Ferrás | F. Pinho | M. A. Alves | A. Afonso
[1] Masoud Darbandi,et al. NUMERICAL STUDY OF THE FLOW BEHAVIOR IN THE UNIFORM VELOCITY ENTRY FLOW PROBLEM , 1998 .
[2] C. Meinhart,et al. Apparent fluid slip at hydrophobic microchannel walls , 2002 .
[3] Lydéric Bocquet,et al. Large Slip Effect at a Nonwetting Fluid-Solid Interface , 1999 .
[4] Hiroshi Mizunuma,et al. Slip of Newtonian Fluids at Solid Boundary , 1997 .
[5] Jaesung Jang,et al. Effects of planar inlet plenums on the hydrodynamically developing flows in rectangular microchannels of complementary aspect ratios , 2008 .
[6] Hiroshi Udagawa,et al. Drag reduction of Newtonian fluid in a circular pipe with a highly water-repellent wall , 1999, Journal of Fluid Mechanics.
[7] P. Ligrani,et al. Slip due to surface roughness for a Newtonian liquid in a viscous microscale disk pump , 2010 .
[8] R. Barber,et al. A NUMERICAL INVESTIGATION OF LOW REYNOLDS NUMBER GASEOUS SLIP FLOW AT THE ENTRANCE OF CIRCULAR AND PARALLEL PLATE MICRO-CHANNELS , 2001 .
[9] S. Granick,et al. Rate-dependent slip of Newtonian liquid at smooth surfaces. , 2001, Physical review letters.
[10] Robert J. Poole,et al. Development length requirements for fully-developed laminar pipe flow of yield stress fluids , 2010 .
[11] E. Bender. Numerical heat transfer and fluid flow. Von S. V. Patankar. Hemisphere Publishing Corporation, Washington – New York – London. McGraw Hill Book Company, New York 1980. 1. Aufl., 197 S., 76 Abb., geb., DM 71,90 , 1981 .
[12] S. Patankar. Numerical Heat Transfer and Fluid Flow , 2018, Lecture Notes in Mechanical Engineering.
[13] Robert J. Poole,et al. Development-Length Requirements for Fully Developed Laminar Pipe Flow of Inelastic Non-Newtonian Liquids , 2007 .
[14] João M. Nóbrega,et al. Implementation of slip boundary conditions in the finite volume method: new techniques , 2013 .
[15] F. Pinho,et al. Numerical simulation of non-linear elastic flows with a general collocated finite-volume method , 1998 .
[16] F. Durst,et al. The Development Lengths of Laminar Pipe and Channel Flows , 2005 .
[17] L. Richardson. The Approximate Arithmetical Solution by Finite Differences of Physical Problems Involving Differential Equations, with an Application to the Stresses in a Masonry Dam , 1911 .
[18] Hans-Jürgen Butt,et al. Boundary slip in Newtonian liquids: a review of experimental studies , 2005 .