Journal of Modern Physics

Journal of Modern Physics

ISSN Print: 2153-1196
ISSN Online: 2153-120X
www.scirp.org/journal/jmp
E-mail: jmp@scirp.org
"Natural Convection of Water-Based Nanofluids in a Square Enclosure with Non-Uniform Heating of the Bottom Wall"
written by Nader Ben-Cheikh, Ali J. Chamkha, Brahim Ben-Beya, Taieb Lili,
published by Journal of Modern Physics, Vol.4 No.2, 2013
has been cited by the following article(s):
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[1] THE INFLUENCE OF NANOFLUID PH ON NATURAL CONVECTION
12th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics
[2] Natural convection heat transport performance of nanofluids under the influence of inclined magnetic field
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[3] Sensitivity analysis of MHD nanofluid flow in a composite permeable square enclosure with the corrugated wall using Response surface methodology-central …
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[4] MHD conjugate natural convection and entropy generation of a nanofluid filled square enclosure with multiple heat-generating elements in the presence of …
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[5] Thermal resistance analysis on conjugate free convective flow in a thick-walled square chamber
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[6] Effects of fluctuating heat flux on natural convection of Al2O3 and Cu nanofluids in a square enclosure: a lattice Boltzmann study
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[7] Effects of the nanoparticle shape on natural convection heat transfer in a square enclosure filled with Cu-H2O nanofluid
Turkish Journal of Electromechanics and Energy, 2023
[8] Experimental Investigation of Natural Convective Heat Transfer of a Bio-Inspired (Mangifera Indica) Leaves Nanofluid in a Square Enclosure
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[9] Effect of hybrid nanoparticles on conjugate mixed convection of a viscoplastic fluid in a ventilated enclosure with wall mounted heated block
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[10] Entropy generation due to hydromagnetic buoyancy-driven hybrid-nanofluid flow in partially heated porous cavity containing heat conductive obstacle
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[11] Numerical study of natural convection of nanofluid in a rectangular closed enclosure (RCE) affected by hot and cold flow in a two‑layer microchannel
Journal of the Brazilian …, 2022
[12] Influence of the Ferro Particles on Convection Inside Inclined 2D Enclosure with Heat Conducting and Generating Body
Journal of Nanofluids, 2022
[13] Comparative Study on Thermal Transmission Aspects of Nano and Ferrofluid in Enclosures Holding Heat-Generating Body
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[14] Heatline visualization of MHD natural convection heat transfer of nanofluid in a prismatic enclosure
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[15] ISPH method for MHD convective flow from grooves inside a nanofluid-filled cavity under the effects of Soret and Dufour numbers
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[16] Influence of Magnetic Wire Positions on free convection of Fe3O4-Water nanofluid in a Square Enclosure Utilizing with MAC Algorithm
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[17] MHD thermogravitational convection and thermal radiation of a micropolar nanoliquid in a porous chamber
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[18] Nonhomogeneous Model for the Mixed Convection and Entropy Generation of a Nanofluid in a Lid-Driven Inclined Enclosure With Discrete Heat Source
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[19] CVFEM simulation for Fe3O4-H2O nanofluid in an annulus between two triangular enclosures subjected to magnetic field and thermal radiation
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[20] Numerical analysis of entropy generation in a square cavity filled with boron-water nanofluid
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[21] Natural Convection in a Nano-Fluid Filled Square Enclosure
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[22] Numerical analysis of rarefied gaseous flows in a square partially heated two-sided wavy cavity with internal heat generation
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[23] Three-dimensional numerical study of mixed convection within a ventilated cavity (Shape 'L ') crossed by a nanofluid under the effect of a magnetic field
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[24] Turbulent heat transfer and nanofluid flow in an annular cylinder with sudden reduction
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[25] Bor Nanoparçacıklarının Doğal Taşınımla Isı Transferinde Nanoakışkan Olarak Kullanımının İncelenmesi ve Karşılaştırılması
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[26] Biologically inspired design and development of a variable stiffness powered ankle-foot prosthesis
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[27] Numerical investigation into natural convection of nanofluids in an inclined square enclosure with non-uniform heated walls
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[28] A Study on Mixed Convection Flow in a Lid-Driven Cavity Filled With Micropolar Nanofluid by Considering Brownian Motion
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[29] The effects of vertical and horizontal sources on heat transfer and entropy generation in an inclined triangular enclosure filled with non-Newtonian fluid and subjected …
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[30] Natural convective heat transfer in a square enclosure utilizing magnetic nanoparticles
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[31] Non-homogeneous model for the mixed convection and entropy generation of a nanofluid in a lid-driven inclined enclosure with discrete heat source
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[32] NATURAL CONVECTIVE HEAT TRANSFER FROM HORIZONTAL AND INCLINED TWO-SIDED BODIES OF FINITE THICKNESS
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[33] Heat transfer in a permeable cavity filled with a ferrofluid under electric force and radiation effects
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[34] Convective Heat Transfer Utilizing Magnetic Nanoparticles in the Presence of a Sloping Magnetic Field Inside a Square Enclosure
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[35] Comparison of local heat transfer distribution in between three-dimensional inclined closed and open cavities
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[36] Controllable natural convection in a rectangular enclosure filled with Fe3O4@ CNT nanofluids
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[37] Effects of variable temperature on mixed convection of a Cu-water nanofluid in a double-lid-driven porous enclosure with active middle vertical wall
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[38] Experimental Heat Transfer From Heating Source Subjected to Rigorous Natural Convection Inside Enclosure and Cooled by Forced Nanofluid Flow
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[39] Numerical computation of natural convection inside a curved-shape nanofluid-filled enclosure with nonuniform heating of the bottom wall
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[40] Steady laminar natural convection of nanofluid under the impact of magnetic field on two-dimensional cavity with radiation
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[41] Water functionalized CuO nanoparticles filled in a partially heated trapezoidal cavity with inner heated obstacle: FEM approach
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[42] Buoyancy-driven flows descending toward hottest spots of heated bottom surfaces in enclosures
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[43] Examining of nanofluid natural convection heat transfer in a Γ-shaped enclosure including a rectangular hot obstacle using the lattice Boltzmann method
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[44] Numerical investigation on natural convection of nanofluids in an inclined square enclosure with non-uniform heated walls
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[45] Effects of Lorentz force and induced electrical field on the thermal performance of a magnetic nanofluid-filled cubic cavity
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[46] Cooling enhancement by nanofluid mixed convection inside a horizontal vented cavity submitted to sinusoidal heating
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[47] Mixed convection heat transfer of a nanofluid in a lid-driven enclosure with two adherent porous blocks
Journal of Thermal Analysis and Calorimetry, 2018
[48] Effect of Nonuniform Heating on Natural Convection in a Vertical Porous Annulus
Flow and Transport in Subsurface Environment, 2018
[49] Computational analysis of nanofluids: A review
The European Physical Journal Plus, 2018
[50] THREE-DIMENSIONAL NUMERICAL STUDY OF MIXED CONVECTION WITHIN A VENTILATED CAVITY (SHAPE ' L ') CROSSED BY A NANOFLUID UNDER THE EFFECT OF A MAGNETIC FIELD
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[51] Nanoakışkanlarda Doğal Taşınımla Isı Transferinin Sayısal Olarak İncelenmesi
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[52] Natural Convection of Water-based Nanofluids in a Square Cavity with Partially Heated of the Bottom Wall
Procedia Engineering, 2017
[53] Buoyancy-Driven Heat Transfer Performance of Pure and Hybrid Nanofluids in Minienclosure
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[54] Combined thermophoresis and Brownian motion effects on nanofluid free convection heat transfer in an L-shaped enclosure
Chinese Journal of Physics, 2017
[55] Effects of Mid-Moving Heated Wall on Mixed Convection in a Fluid-Saturated Non-Darcy Porous Enclosure with Sinusoidal Heating Walls and Filled with Cu-Water …
Journal of Nanofluids, 2017
[56] Convection in a sinusoidally heated square enclosure utilizing Ag− water nanofluid with heat generating solid body
International Journal of Mechanical Sciences, 2017
[57] Transientnaturalconvectiveheattransfer inatrapezoidalcavityfilledwith non-Newtonian nanofluid with sinusoidal boundary conditions on both sidewalls
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[58] Rayleigh–Benard convection in water-based alumina nanofluid: A numerical study
International Journal of Urban Sustainable Development, 2017
[59] Natural Convection Flow of a Nanofluid in an Inclined Square Enclosure Partially Filled with a Porous Medium
Scientific Reports, 2017
[60] Heatline Analysis on Heat Transfer and Convective Flow of Nanofluids in an Inclined Enclosure
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[61] non-Newtonian nanofluid with sinusoidal boundary conditions on both sidewalls
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[62] Evaluation of Heat Transfer and Entropy Generation by Al2O3-Water Nanofluid
International Journal of Mechanical, Aerospace, Industrial, Mechatronic and Manufacturing Engineering, 2016
[63] Magneto-convection of water-based nanofluids inside an enclosure having uniform heat generation and various thermal boundaries
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[64] Heatline visualization of conjugate natural convection in a square cavity filled with nanofluid with sinusoidal temperature variations on both horizontal walls
International Journal of Heat and Mass Transfer, 2016
[65] Fourth-Order Compact Formulation for the Resolution of Heat Transfer in Natural Convection of Water-Cu Nanofluid in a Square Cavity with a Sinusoidal Boundary …
2016
[66] Effect of Inclination Angle and Magnetic Field on Convection Heat Transfer for Nanofluid in a Porous Cavity.
Journal of Applied Fluid Mechanics, 2016
[67] Numerical Study of Natural Convection in a Three-dimensional Cavity Filled with Nanofluids
International Journal of Computer Science Issues (IJCSI), 2016
[68] Transient natural convective heat transfer in a trapezoidal cavity filled with non-Newtonian nanofluid with sinusoidal boundary conditions on both sidewalls
Powder Technology, 2016
[69] Fourth-Order Compact Formulation for the Resolution of Heat Transfer in Natural Convection of Water-Cu Nanofluid in a Square Cavity with a Sinusoidal …
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[70] Effect of inclination angle and magnetic field on convection heat transfer for nanofluid in a porous cavity
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[71] Cidarına Isıtıcı Yerleştirilmiş Kapalı Kutu İçindeki Su Bazlı Nanoakışkanların Laminer Doğal Taşınımla Isı Transferi.
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[72] A Numerical Study of Natural Convection in a Square Enclosure with Non-Uniformly Heated Bottom Wall and Square Shape Heated Block
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[73] Natural convection heat transfer enhancement using nanofluid and time-variant temperature on the square enclosure with diagonally constructed twin adiabatic blocks
Applied Thermal Engineering, 2015
[74] Non-Darcy double diffusive mixed convection for nanofluid with Soret and Dufour effects in a lid-driven cavity
International Journal of Nanoparticles, 2015
[75] Cidarına Isıtıcı Yerleştirilmiş Kapalı Kutu İçindeki Su Bazlı Nanoakışkanların Laminer Doğal Taşınımla Isı Transferi
Afyon Kocatepe üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, 2015
[76] Afyon Kocatepe Üniversitesi Fen ve Mühendislik Bilimleri Dergisi
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[77] Numerical modeling of natural convection of a nanofluid between two enclosures
Journal of Nanofluids, 2014
[78] Transient Natural Convection Heat Transfer of Al2O3-Water Nanofluid in Enclosure: A Numerical Study
International Refereed Journal of Engineering and Science, 2014
[79] FOURTH-ORDER COMPACT FORMULATION TO THE RESOLUTION OF HEAT TRANSFER BY NATURAL CONVECTION IN A SQUARE CAVITY FILLED NANOFLUID
International Journal of Energy & Technology, 2013
[80] FOURTH-ORDER COMPACT FORMULATION TO THE RESOLUTION OF HEAT TRANSFER BY NATURAL CONVECTION IN A SQUARE CAVITY FILLED …
M Zaydan
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