Publicou 12 edições por ano
ISSN Imprimir: 1091-028X
ISSN On-line: 1934-0508
Indexed in
Convective Flow and Heat Transfer in an Inclined Composite Porous Medium
RESUMO
An analytical study of non-Darcian convective flow and heat transfer in an inclined composite porous medium is performed. The flow is modeled using the Darcy-Lapwood-Brinkman equation. The viscous and Darcy dissipation terms are included in the energy equation. The governing equations are coupled and nonlinear because of the inclusion of dissipation terms and buoyancy force. The equations are solved using a straightforward perturbation method. The effects of various parameters such as porous parameter, inclination angle, Grashoff number, ratios of heights, permeabilities, and thermal conductivities are discussed.
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Umavathi J. C., Liu I. C., Prathap-Kumar J., Shaik-Meera D., Unsteady flow and heat transfer of porous media sandwiched between viscous fluids, Applied Mathematics and Mechanics, 31, 12, 2010. Crossref
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Kumar J. Prathap, Umavathi J. C., Pop I., Biradar Basavaraj M., Fully Developed Mixed Convection Flow in a Vertical Channel Containing Porous and Fluid Layer with Isothermal or Isoflux Boundaries, Transport in Porous Media, 80, 1, 2009. Crossref
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Umavathi J. C., Chamkha Ali J., Mateen Abdul, Al-Mudhaf Ali, Unsteady two-fluid flow and heat transfer in a horizontal channel, Heat and Mass Transfer, 42, 2, 2005. Crossref
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Umavathi J. C., Analysis of Flow and Heat Transfer in a Vertical Rectangular Duct Using a Non-Darcy Model, Transport in Porous Media, 96, 3, 2013. Crossref
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Prathap Kumar J., Umavathi J.C., Madhavarao Shivakumar, Dispersion in composite porous medium with homogeneous and heterogeneous chemical reactions, Heat Transfer-Asian Research, 40, 7, 2011. Crossref
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Umavathi J. C., Free convection of composite porous medium in a vertical channel, Heat Transfer-Asian Research, 40, 4, 2011. Crossref
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Goldstein R.J, Eckert E.R.G, Ibele W.E, Patankar S.V, Simon T.W, Kuehn T.H, Strykowski P.J, Tamma K.K, Heberlein J.V.R, Davidson J.H, Bischof J, Kulacki F.A, Kortshagen U, Garrick S, Heat transfer––a review of 2001 literature, International Journal of Heat and Mass Transfer, 46, 11, 2003. Crossref
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Umavathi J. C., Shekar M., Unsteady mixed convective flow and heat transfer in a vertical corrugated channel with composite porous media, Journal of Engineering Physics and Thermophysics, 86, 4, 2013. Crossref
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Umavathi J.C., Veershetty Santosh, Mixed convection of a permeable fluid in a vertical channel with boundary conditions of a third kind, Heat Transfer-Asian Research, 41, 6, 2012. Crossref
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Jha Basant K., Daramola Deborah, Ajibade Abiodun O., Mixed Convection in an Inclined Channel Filled with Porous Material Having Time-Periodic Boundary Conditions: Steady-Periodic Regime, Transport in Porous Media, 109, 2, 2015. Crossref
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Nield Donald A., Bejan Adrian, Internal Natural Convection: Heating from the Side, in Convection in Porous Media, 2017. Crossref
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Nield Donald A., Bejan Adrian, Internal Natural Convection: Heating from the Side, in Convection in Porous Media, 2013. Crossref
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Umavathi J.C., Shekar M., Mixed convective flow of two immiscible viscous fluids in a vertical wavy channel with traveling thermal waves, Heat Transfer-Asian Research, 40, 8, 2011. Crossref
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Umavathi J.C., Buonomo Bernardo, Manca Oronzio, Sheremet Mikhail A., Heat transfer of chemically reacting mixed convection fluid using convective surface condition: Non-Darcy model, Thermal Science and Engineering Progress, 25, 2021. Crossref
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Khan Zeeshan, Tairan Nasser, Mashwani Wali Khan, Rasheed Haroon Ur, Shah Habib, Khan Waris, MHD and Slip Effect on Two-immiscible Third Grade Fluid on Thin Film Flow over a Vertical Moving Belt, Open Physics, 17, 1, 2019. Crossref
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Umavathi J.C., Anwar Bég O., Effects of thermophysical properties on heat transfer at the interface of two immisicible fluids in a vertical duct: Numerical study, International Journal of Heat and Mass Transfer, 154, 2020. Crossref