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Keywords: thermal boundary layer
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Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. September 2021, 143(9): 094502.
Paper No: HT-21-1221
Published Online: July 22, 2021
...C. Y. Wang The Falkner–Skan flow over a wedge is classic in boundary layer theory. We consider the heat or mass transfer from a source at the vertex of the wedge. The interactions of the thermal boundary layer and momentum boundary layer lead to nonlinear similarity equations which are integrated...
Journal Articles
Journal Articles
Article Type: Research Papers
J. Heat Transfer. December 2011, 133(12): 121702.
Published Online: October 6, 2011
...R. Sabbah; J. Seyed-Yagoobi; S. Al-Hallaj This numerical investigation fundamentally explores the thermal boundary layers’ characteristics of liquid flow with micro-encapsulated phase change material (MEPCM). Unlike pure liquids, the heat transfer characteristics of MEPCM slurry cannot be simply...
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. June 2010, 132(6): 064501.
Published Online: March 31, 2010
... understanding of the physical phenomena and could help in reducing numerical computational time. boundary layers film flow heat transfer mass transfer water film thermal boundary layer semi-analytical solution Whittaker’s functions The study of a liquid film flowing down an inclinated...
Journal Articles
Article Type: Research Papers
J. Heat Transfer. January 2009, 131(1): 012001.
Published Online: October 14, 2008
... with a thermal boundary layer measurement technique and mass transfer measurements employing naphthalene sublimation technique on the endwall with the fillets are extracted from literature with equivalent experimental conditions and a similar geometry. As expected by heat transfer and mass transfer equations...
Journal Articles
Journal Articles
Journal Articles
Article Type: Technical Briefs
J. Heat Transfer. October 2006, 128(10): 1099–1102.
Published Online: July 9, 2006
...A. M. Kalteh; A. Abbassi In this work the similarity solution of the thermal boundary layer for a laminar axisymmetric jet with viscous dissipation is derived and solved numerically, using a fourth-order Runge-Kutta method. The results are compared with the existing solutions, in which viscous...