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Keywords: iterative methods
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Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. April 2012, 134(4): 044502.
Published Online: February 16, 2012
... walls. 26 01 2011 08 08 2011 16 02 2012 16 02 2012 boundary layers convergence of numerical methods diffusion emissivity finite element analysis iterative methods radiative heat transfer finite element method diffusely reflecting boundary As an approach...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. November 2011, 133(11): 114501.
Published Online: August 31, 2011
... combustion desorption external flows finite difference methods finite volume methods flames flow instability flow simulation flow through porous media heat transfer hydrogen iterative methods mass transfer oxygen platinum temperature distribution catalytic surface reaction hydrogen/air...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. June 2010, 132(6): 062502.
Published Online: April 1, 2010
... fields indicating departure from the pseudosteady-state were observed. 14 06 2009 11 11 2009 01 04 2010 01 04 2010 boundary layer turbulence finite volume methods flow simulation fluid oscillations iterative methods natural convection stratified flow vortices...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 2009, 131(8): 082001.
Published Online: June 1, 2009
...
current on steady MHD laminar flow of a compressible electrically conducting fluid
on a porous rotating disk have been studied by Maleque and Sattar ( 15 16 ). MHD flow heat and mass transfer thermal diffusion rotating disk convection discs (structures) iterative...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. July 2009, 131(7): 072102.
Published Online: May 12, 2009
... , C. , 2007 , “ Transport Processes in Drawing of Optical Fibers With Core-Cladding Structure ,” Ph.D. thesis, Rutgers University, New Brunswick, NJ. 03 06 2008 28 10 2008 12 05 2009 drawing (mechanical) heat radiation iterative methods optical fibre fabrication...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 2009, 131(2): 021301.
Published Online: December 15, 2008
... method finite element analysis heat conduction interface phenomena inverse problems iterative methods 19 12 2007 17 06 2008 15 12 2008 Identification results of the interfacial configuration with 24 measurement points for test case III: ( a ) λ 1 = 2...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. January 2009, 131(1): 014504.
Published Online: October 22, 2008
... be very slow. This paper compares the performance of the corrective acceleration scheme of and Li and Modest (2002, “A Method to Accelerate Convergence and to Preserve Radiative Energy Balance in Solving the P1 Equation by Iterative Methods,” ASME J. Heat Transfer, 124, pp. 580–582 ), and the additive...
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. July 2007, 129(7): 884–893.
Published Online: December 27, 2006
... solved by the above-mentioned technique. 26 06 2006 27 12 2006 heat exchangers flow simulation plates (structures) heat conduction conservation laws iterative methods heat exchangers multistream plate fin axial conduction heat leakage In addition to fluid film...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 2007, 129(2): 124–136.
Published Online: May 25, 2006
... as well as steady-state iterative methods. We apply the method to viscous fluid flow and conjugate heat transfer (CHT) modeling. The incompressible Navier–Stokes are time marched using a Helmholtz potential decomposition for the velocity field. When CHT is considered, the same RBF expansion is used...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 2007, 129(2): 109–113.
Published Online: April 30, 2006
... conduction piecewise linear techniques nonlinear equations iterative methods radial basis function networks 13 06 2005 30 04 2006 2007 American Society of Mechanical Engineers ...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 2006, 128(2): 162–175.
Published Online: August 5, 2005
.... 23 12 2004 05 08 2005 porous materials mass transfer heat conduction flow through porous media nonequilibrium flow laminar flow turbulence computational fluid dynamics iterative methods inverse convolution system identification functionalization input output coupled...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 2006, 128(2): 142–152.
Published Online: August 2, 2005
... are also discussed. 29 11 2004 02 08 2005 plates (structures) magnetohydrodynamics convection external flows flow through porous media boundary layers nonlinear differential equations rotational flow iterative methods friction MHD convection micropolar fluid...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. March 2006, 128(3): 261–268.
Published Online: July 28, 2005
... for setting up the governing radiant exchange integral equations. These equations are then solved by the usual iterative method devized for the Fredholm integral equation of the second kind. The suggested coordinate transformation is also utilized for determination of directional absorptivity of a fully...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. October 2005, 127(10): 1138–1150.
Published Online: May 10, 2005
... equations integration iterative methods Development of efficient solvers for Navier–Stokes flows at high Reynolds numbers has been an area of constant interest for the past half century. Great progress has been made toward this objective, especially during the last two decades. Well-established...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. September 2005, 127(9): 1037–1045.
Published Online: April 1, 2005
... Numerical Convergence Acceleration Coupled Solution heat radiation iterative methods radiative transfer convergence of numerical methods heat conduction 27 12 2004 01 04 2005 2005 American Society of Mechanical Engineers ...
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. December 2003, 125(6): 1087–1095.
Published Online: November 19, 2003
... number defined by Re b = q w D / μ L h fg . Boiling Heat Transfer heat transfer boiling heat conduction external flows iterative methods 2003 ASME ...
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. October 2003, 125(5): 845–851.
Published Online: September 23, 2003
... Division December 5, 2002; revision received May 16, 2003. Associate Editor: S. T. Thynell. 05 December 2002 16 May 2003 23 09 2003 optimisation heat radiation iterative methods Monte Carlo methods Geometry Heat Transfer Monte Carlo Radiation The design...
Journal Articles
Publisher: ASME
Article Type: Technical Notes
J. Heat Mass Transfer. June 2002, 124(3): 580–582.
Published Online: May 10, 2002
... Diffusion Equations of Reactor
Physics , Prentice-Hall, Englewood Cliffs, NJ. Reed , W.
H. , 1971 ,
“ The Effectiveness of Acceleration Techniques for Iterative
Methods in Transport Theory...
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. December 2001, 123(6): 1030–1034.
Published Online: May 15, 2001
.... 24 July 2000 15 May 2001 heat transfer laminar flow pipe flow temperature distribution iterative methods Computational Finite Difference Heat Pipes Laminar Ducts of various cross sections containing inside fins are widely used in modern engineering heat transfer...
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. June 2001, 123(3): 476–485.
Published Online: November 7, 2000
.... Finally, a least-squares iteration method is developed to solve for the interface positions. The four examples presented in this paper cover the phase change in cylinders and cylindrical shells. Comparisons are made between the temperatures for materials with and without phase change. The U function...
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