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Nonlinear thermal instability in a horizontal porous layer with an internal heat source and mass flow
Authors
A. A. Hill
A. Barletta
+29 more
A. Borujerdi
A. Matta
A.A. Hill
A.J. Chamka
A.N. Borujerdi
B. Straughan
B.S. Bhadauria
C. Parthiban
C. Parthiban
D.A. Nield
D.A. Nield
D.A. Nield
F. Capone
G. Bendrichi
J. Guo
J. Trittond
J.E. Weber
O. Kwon
P. A. L. Narayana
P.H. Roberts
P.M. Kaloni
P.N. Kaloni
P.N. Kaloni
P.N. Kaloni
R. Thirlby
S. Rionero
T. Aihara
W. Schwiderskei
X. Chen
Publication date
1 January 2016
Publisher
'Springer Science and Business Media LLC'
Doi
Cite
Abstract
© 2016, Springer-Verlag Wien. Linear and nonlinear stability analyses of Hadley–Prats flow in a horizontal fluid-saturated porous medium with a heat source are performed. The results indicate that, in the linear case, an increase in the horizontal thermal Rayleigh number is stabilizing for both positive and negative values of mass flow. In the nonlinear case, a destabilizing effect is identified at higher mass flow rates. An increase in the heat source has a destabilizing effect. Qualitative changes appear in Rz as the mass flow moves from negative to positive for different internal heat sources
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