Applied Mathematics

Applied Mathematics

ISSN Print: 2152-7385
ISSN Online: 2152-7393
www.scirp.org/journal/am
E-mail: am@scirp.org
"Approximate Analytical Solutions for the Nonlinear Brinkman-Forchheimer-Extended Darcy Flow Model"
written by Basant K. Jha, Muhammad L. Kaurangini,
published by Applied Mathematics, Vol.2 No.12, 2011
has been cited by the following article(s):
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[1] Numerical analysis of Carreau fluid flow over a vertical porous microchannel with entropy generation
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[2] Analysis of Brinkman-Forchheimer extended Darcy's model in a fluid saturated anisotropic porous channel
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[3] The Flow in Periciliary Layer in Human Lungs with Navier-Stokes-Brinkman Equations
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[4] A multipoint flux approximation finite volume method for the numerical simulation of the stokes-brinkman problem in 2-D using unstructured meshes
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[5] BRINKMAN-FORCHHEIMER EQUATIONS IN HOMOGENEOUS SOBOLEV SPACES
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[6] Rotating flow of carbon nanotubes subject to prescribed heat flux condition
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[7] Impact of melting heat transfer in the time-dependent squeezing nanofluid flow containing carbon nanotubes in a Darcy-Forchheimer porous media with Cattaneo …
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[8] Emhd mixed convection flow through saturated porous rectangular channel.(Dept. M (Power))
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[9] ผล เฉลย ของ การ ไหล แบบ บ ริ ง แมน ไม่ เชิง เส้น เหนือ ชั้น เพ อริ ซิ เลีย รี โดย ใช้ วิธี การ ผล ต่าง อันตะ และ นิ ว ตัน รา ฟ สัน แบบ n มิติ
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[10] Computational and physical examination about the aspects of fluid flow between two coaxially rotated disks by capitalizing non-Fourier heat flux theory: finite …
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[11] Darcy-Forchheimer flow over an exponentially stretching curved surface with Cattaneo-Christov double diffusion
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[12] Computational and Physical Examination about the aspects of Fluid Flow between two Coaxially Rotated disks by Capitalizing Non-Fourier Heat Flux Theory …
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[13] Computational and physical examination about the aspects of fluid flow between two coaxially rotated disks by capitalizing non‐Fourier heat flux theory: finite …
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[14] Generalized Fourier's law and Darcy-Forchheimer forced/mixed convective flow towards a Riga plate with second order velocity slip: A numerical study
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[15] Implementation of a Two-Phase Simulator Based on the Brinkman's Equation for Vuggy-Karstified Reservoirs
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[16] Upshot of ohmically dissipated Darcy-Forchheimer slip flow of magnetohydrodynamic Sutterby fluid over radiating linearly stretched surface in view of Cash and Carp …
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[17] Darcy–Forchheimer flow of Maxwell fluid with activation energy and thermal radiation over an exponential surface
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[18] Darcy–Forchheimer flow of carbon nanotubes due to a convectively heated rotating disk with homogeneous–heterogeneous reactions
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[19] Upshot of ohmically dissipated Darcy-Forchheimer slip flow of magnetohydrodynamic Sutterby fluid over radiating linearly stretched surface in view of Cash and …
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[20] Simulação numérica de escoamentos em reservatórios carbonáticos utilizando um modelo de Stokes-Brinkman por meio de métodos localmente conservativos
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[21] Mathematical models for heat and mass transfer in nanofluid flows.
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[22] Carbon nanotubes significance in Darcy-Forchheimer flow
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[23] Darcy–Forchheimer squeezed flow of carbon nanotubes with thermal radiation
Journal of Physics and Chemistry of Solids, 2018
[24] Brinkman-Forchheimer flow of SWCNT and MWCNT magneto-nanoliquids in a microchannel with multiple slips and Joule heating aspects
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[25] An optimal analysis for Darcy–Forchheimer 3D flow of nanofluid with convective condition and homogeneous–heterogeneous reactions
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[26] On Darcy-Forchheimer squeezed flow of carbon nanotubes between two parallel disks
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[27] Numerical simulation for Darcy–Forchheimer three-dimensional rotating flow of nanofluid with prescribed heat and mass flux conditions
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[28] Numerical treatment for Darcy–Forchheimer flow of nanofluid due to a rotating disk with convective heat and mass conditions
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[29] Hydromagnetic rotating flow of Casson fluid in Darcy-Forchheimer porous medium
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[30] Three-dimensional rotating Darcy–Forchheimer flow with activation energy
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[31] Darcy-Forchheimer flow with variable thermal conductivity and Cat
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[32] Effect of Heat Sources on Non-Darcy Convective Heat and Mass Transfer Flow of CuO-Water and Al2O3-Water Nanofluids in Vertical Channel
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[33] On Darcy-Forchheimer flow of carbon nanotubes due to a rotating disk
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[34] Chemical reaction effects on MHD rotating fluid over a vertical plate embedded in porous medium with heat source
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[35] Three-dimensional rotating flow of carbon nanotubes with Darcy-Forchheimer porous medium
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[36] An optimal study for Darcy-Forchheimer flow with generalized Fourier's and Fick's laws
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[37] Darcy-Forchheimer flow due to a curved stretching surface with Cattaneo-Christov double diffusion: A numerical study
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[38] Numerical Study of the Effects of Suction and Pressure Gradient on an Unsteady MHD Fluid Flow between Two Parallel Plates in a Non-Darcy Porous Medium
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[39] Upshot of binary chemical reaction and activation energy on carbon nanotubes with Cattaneo-Christov heat flux and buoyancy effects
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[40] Impact of Cattaneo-Christov heat flux on flow of two-types viscoelastic fluid in Darcy-Forchheimer porous medium
International Journal of Numerical Methods for Heat & Fluid Flow, 2017
[41] Darcy-Forchheimer flow with variable thermal conductivity and Cattaneo-Christov heat flux
International Journal of Numerical Methods for Heat & Fluid Flow, 2016
[42] Homotopy perturbation method for the strongly nonlinear Darcy-Forscheimer model
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[43] ? MHD FLOW THROUGH DARCY-BRINKMAN–FORCHHEIMER EXTENDED POROUS MEDIA OVER A NONLINEARSTRETCHING SHEET
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[44] Double–Diffusive convection of a rotating fluid over a vertical plate embedded in Darcy–Forchheimer porous medium with non-uniform heat sources
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[45] Double Diffusive Convection of a Rotating Fluid Over a Vertical Plate Embedded in Darcy-Forchheimer Porous Medium with Non-Uniform Heat Sources
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[46] Double diffusive convection of a rotating fluid over a vertical plate embedded in a Darcy-Forchheimer porous medium with non-uniform heat sources
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[47] The immersed boundary method for simulating gravitational settling and fluid shear-induced deformation of elastic structures
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[48] DoubleDiffusiveConvection of a Rotating Fluid over a Vertical Plate Embedded in Darcy–Forchheimer Porous Medium with Nonuniform Heat Source
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[49] Analytical Solutions of Nonlinear Brinkman-Forchheimer-Extended Darcy Flow Model With
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[50] ANALYTICAL SOLUTIONS OF NONLINEAR BRINKMAN-FORCHHEIMER-EXTENDED DARCY FLOW MODEL WITH SLIP BOUNDARY CONDITIONS
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[51] Generalized Fourier's Law and Darcy–Forchheimer Forced/Mixed Convective Flow Towards a Riga Plate with Second-Order Velocity Slip: A Numerical Study
Ming, KM Ijaz
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