Publication Cover
Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 67, 2015 - Issue 8
360
Views
45
CrossRef citations to date
0
Altmetric
Original Articles

Natural Convection Heat Transfer in an Enclosure Filled with an Ethylene Glycol—Copper Nanofluid Under Magnetic Fields

&
Pages 902-920 | Received 04 Nov 2013, Accepted 24 Jul 2014, Published online: 20 Dec 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Mohamed Dhia Massoudi & Mohamed Bechir Ben Hamida. (2022) Enhancement of MHD radiative CNT-50% water + 50% ethylene glycol nanoliquid performance in cooling an electronic heat sink featuring wavy fins. Waves in Random and Complex Media 0:0, pages 1-26.
Read now
Nagehan Alsoy-Akgün. (2019) Effect of an uniform magnetic field on unsteady natural convection of nanofluid. Journal of Taibah University for Science 13:1, pages 1073-1086.
Read now
Massimo Corcione, Marta Cianfrini & Alessandro Quintino. (2016) Temperature effects on the enhanced or deteriorated buoyancy-driven heat transfer in differentially heated enclosures filled with nanofluids. Numerical Heat Transfer, Part A: Applications 70:3, pages 223-241.
Read now
Qi Yao, Tien-Mo Shih, Richard Ru-Gin Chang, Zhong Chen, Yu-Lin Gao & Yi-Jun Lu. (2016) Optimization of the cooling characteristics in high-voltage LEDs. Numerical Heat Transfer, Part A: Applications 69:11, pages 1242-1252.
Read now
Münevver Tezer-Sezgin, Canan Bozkaya & Önder Türk. (2016) Natural convection flow of a nanofluid in an enclosure under an inclined uniform magnetic field. European Journal of Computational Mechanics 25:1-2, pages 2-23.
Read now

Articles from other publishers (40)

Raouia Azzouz & Mohamed Bechir Ben Hamida. (2023) Natural Convection in a Circular Enclosure with Four Cylinders under Magnetic Field: Application to Heat Exchanger. Processes 11:8, pages 2444.
Crossref
Ahad Abedini Esfahlani & Hadi Kargarsharifabad. (2023) Magnetohydrodynamics Natural Convection Inside an Annulus Equipped with Fins. Journal of Thermophysics and Heat Transfer 37:3, pages 584-593.
Crossref
Mohamed Dhia Massoudi & Mohamed Bechir Ben Hamida. (2023) Combined impacts of square fins fitted wavy wings and micropolar magnetized-radiative nanofluid on the heat sink performance. Journal of Magnetism and Magnetic Materials 574, pages 170655.
Crossref
Sayed Hamid Bahreini, Mohsen Saghafian & Omid Ali Akbari. (2023) Heat transfer across the dynamics of water conveying alumina nanoparticles subject to Lorentz force in a rectangular cavity with various aspect ratios. Journal of Thermal Analysis and Calorimetry 148:6, pages 2251-2264.
Crossref
M. A. Mansour, Rama Subba Reddy Gorla, Sadia Siddiqa, A. M. Rashad & T. Salah. (2023) Unsteady MHD natural convection flow of a nanofluid inside an inclined square cavity containing a heated circular obstacle. International Journal of Nonlinear Sciences and Numerical Simulation 24:1, pages 37-55.
Crossref
Mohamed Dhia Massoudi, Mohamed Bechir Ben Hamida, Mohammed A. Almeshaal & Khalil Hajlaoui. (2022) Numerical evaluation of MHD SWCNT-water nanoliquid performance in cooling an electronic heat sink featuring twisted hexagonal fins considering thermal emission impact: Comparison between various fins shapes. Sustainable Energy Technologies and Assessments 53, pages 102350.
Crossref
Shantanu Dutta & Thanaa Elnaqeeb. (2022) Numerical simulation of non-uniform heating due to magnetohydrodynamic natural convection in a nanofluid filled rhombic enclosure. The European Physical Journal Special Topics 231:13-14, pages 2879-2900.
Crossref
Mohamed Dhia Massoudi, Mohamed Bechir Ben Hamida, Mohammed A. Almeshaal & Khalil Hajlaoui. (2022) Effects of L-shaped fins on cooling an electronic heat sink fitted under magnetic field of CNT–water/ethylene glycol nanoliquid. The European Physical Journal Plus 137:7.
Crossref
M. Mohammadi & S.A. Gandjalikhan Nassab. (2022) Combined influences of radiation and inclined magnetic field on natural convection in a cavity with complex geometry. International Communications in Heat and Mass Transfer 134, pages 106030.
Crossref
Mohamed Bechir Ben Hamida. (2022) Fluid-Structure Interaction Analysis in Natural Convection Heat Transfer Inside a T-Shaped Cavity with a Flexible Baffle. Journal of Nanofluids 11:2, pages 169-191.
Crossref
Ahmed Kadhim Hussein, Hameed Kadhem Hamzah, Farooq Hassan Ali & Masoud Afrand. (2022) Natural convection in F-shaped cavity filled with Ag-water non-Newtonian nanofluid saturated with a porous medium and subjected to a horizontal periodic magnetic field. Korean Journal of Chemical Engineering 39:4, pages 887-901.
Crossref
Gopal Chandra Pal, Govindarao Nammi, Sukumar Pati, Pitambar R. Randive & László Baranyi. (2022) Natural convection in an enclosure with a pair of cylinders under magnetic field. Case Studies in Thermal Engineering 30, pages 101763.
Crossref
Mohamad Sadegh Sadeghi, Naghmeh Anadalibkhah, Ramin Ghasemiasl, Taher Armaghani, Abdul Sattar Dogonchi, Ali J. Chamkha, Hafiz Ali & Amin Asadi. (2020) On the natural convection of nanofluids in diverse shapes of enclosures: an exhaustive review. Journal of Thermal Analysis and Calorimetry 147:1, pages 1-22.
Crossref
Mohamed Bechir Ben Hamida, Mohammed A. Almeshaal & Khalil Hajlaoui. (2021) A three-dimensional thermal analysis for cooling a square Light Emitting Diode by Multiwalled Carbon Nanotube-nanofluid-filled in a rectangular microchannel. Advances in Mechanical Engineering 13:11, pages 168781402110599.
Crossref
S. Parsaee, S. Payan & A. Payan. (2021) Semi-transient thermal analysis from MHD-Participating fluid into a square cavity with variable optical thickness. International Journal of Thermal Sciences 169, pages 107072.
Crossref
Shantanu Dutta, Sukumar Pati & László Baranyi. (2021) Numerical analysis of magnetohydrodynamic natural convection in a nanofluid filled quadrantal enclosure. Case Studies in Thermal Engineering, pages 101507.
Crossref
S. O. Giwa, M. Sharifpur, M. H. Ahmadi & J. P. Meyer. (2020) A review of magnetic field influence on natural convection heat transfer performance of nanofluids in square cavities. Journal of Thermal Analysis and Calorimetry 145:5, pages 2581-2623.
Crossref
Mohamed Dhia Massoudi, Mohamed Bechir Ben Hamida, Mohammed A. Almeshaal & Khalil Hajlaoui. (2021) The influence of multiple fins arrangement cases on heat sink efficiency of MHD MWCNT-water nanofluid within tilted T-shaped cavity packed with trapezoidal fins considering thermal emission impact. International Communications in Heat and Mass Transfer 126, pages 105468.
Crossref
Mohamed Bechir Ben Hamida & Mohammad Hatami. (2021) Optimization of fins arrangements for the square light emitting diode (LED) cooling through nanofluid-filled microchannel. Scientific Reports 11:1.
Crossref
Bader Alshuraiaan & Ioan Pop. (2021) Numerical simulation of mixed convection in a lid-driven trapezoidal cavity with flexible bottom wall and filled with a hybrid nanofluid. The European Physical Journal Plus 136:5.
Crossref
Mohamed Dhia Massoudi & Mohamed Bechir Ben Hamida. (2020) Free convection and thermal radiation of a nanofluid inside an inclined L‐shaped microelectronic module under the Lorentz forces' impact. Heat Transfer 50:3, pages 2849-2873.
Crossref
O. Anwar Beg, F.T. Zohra, M.J. Uddin, A.I.M. Ismail & Saratha Sathasivam. (2021) Energy conservation of nanofluids from a biomagnetic needle in the presence of Stefan blowing: Lie symmetry and numerical simulation. Case Studies in Thermal Engineering 24, pages 100861.
Crossref
Mohamed Bechir Ben Hamida, Kamel Charrada, Mohammed A. Almeshaal & Ali Chamkha. (2021) A three-dimensional thermal analysis and optimization of square light edding diode subcomponents. International Communications in Heat and Mass Transfer 120, pages 105016.
Crossref
Bharat Bhanvase & Divya Barai. 2021. Nanofluids for Heat and Mass Transfer. Nanofluids for Heat and Mass Transfer 229 261 .
Mohamed Dhia Massoudi & Mohamed Bechir Ben Hamida. (2020) MHD natural convection and thermal radiation of diamond–water nanofluid around rotating elliptical baffle inside inclined trapezoidal cavity. The European Physical Journal Plus 135:11.
Crossref
Rawya Ben Jaballah, Mohamed Bechir Ben Hamida, Mohammed A. Almeshaal & Ali Chamkha. (2020) The influence of hybrid nanofluid and coolant flow direction on bubble mode absorption improvement. Mathematical Methods in the Applied Sciences.
Crossref
Mohamed Dhia Massoudi, Mohamed Bechir Ben Hamida, Hussein A. Mohammed & Mohammed A. Almeshaal. (2020) MHD Heat Transfer in W-Shaped Inclined Cavity Containing a Porous Medium Saturated with Ag/Al2O3 Hybrid Nanofluid in the Presence of Uniform Heat Generation/Absorption. Energies 13:13, pages 3457.
Crossref
Sameh E. Ahmed, M. A. Mansour, A. M. Rashad & T. Salah. (2019) MHD natural convection from two heating modes in fined triangular enclosures filled with porous media using nanofluids. Journal of Thermal Analysis and Calorimetry 139:5, pages 3133-3149.
Crossref
Wassila Grine & Mohamed E. H. Benhamza. (2019) Modeling the effective thermal conductivity of nanofluids using full factorial design analysis. Heat Transfer—Asian Research 48:7, pages 2930-2947.
Crossref
B. Yang, M.M. Sarafraz & M. Arjomandi. (2019) Marangoni effect on the thermal performance of glycerol/water mixture in microchannel. Applied Thermal Engineering 161, pages 114142.
Crossref
K. S. Al-Kalbani & M. M. Rahman. (2019) Convective Heat Transfer in the Flow of a Nanofluid in an Inclined Square Enclosure. Journal of Engineering Physics and Thermophysics 92:5, pages 1150-1170.
Crossref
Shantanu Dutta, Navneet Goswami, Arup Kumar Biswas & Sukumar Pati. (2019) Numerical investigation of magnetohydrodynamic natural convection heat transfer and entropy generation in a rhombic enclosure filled with Cu-water nanofluid. International Journal of Heat and Mass Transfer 136, pages 777-798.
Crossref
Sana Ben Salah & Mohamed Bechir Ben Hamida. (2019) Heat transfer enhancement of circular and square LED geometry. International Journal of Numerical Methods for Heat & Fluid Flow 29:5, pages 1877-1898.
Crossref
Mohamed A. Medebber, Abderrahmane Aissa, Mohamed El Amine Slimani & Noureddine Retiel. (2019) Numerical Study of Natural Convection in Vertical Cylindrical Annular Enclosure Filled with Cu-Water Nanofluid under Magnetic Fields. Defect and Diffusion Forum 392, pages 123-137.
Crossref
M.J. Uddin, A. Sohail, O. Anwar Bég & A.I.Md. Ismail. (2018) Numerical solution of MHD slip flow of a nanofluid past a radiating plate with Newtonian heating: A Lie group approach. Alexandria Engineering Journal 57:4, pages 2455-2464.
Crossref
Mohamed Bechir Ben Hamida, Jalel Belghaieb & Nejib Hajji. (2018) Heat and Mass Transfer Enhancement for Falling Film Absorption Process in Vertical Plate Absorber by Adding Copper Nanoparticles. Arabian Journal for Science and Engineering 43:9, pages 4991-5001.
Crossref
F.T. Zohra, M.J. Uddin, A.I.M. Ismail, O. Anwar Bég & A. Kadir. (2018) Anisotropic slip magneto-bioconvection flow from a rotating cone to a nanofluid with Stefan blowing effects. Chinese Journal of Physics 56:1, pages 432-448.
Crossref
Chandra Shekar Balla, Naikoti Kishan, Rama S.R. Gorla & B.J. Gireesha. (2017) MHD boundary layer flow and heat transfer in an inclined porous square cavity filled with nanofluids. Ain Shams Engineering Journal 8:2, pages 237-254.
Crossref
Ching-Chang Cho. (2016) Influence of magnetic field on natural convection and entropy generation in Cu–water nanofluid-filled cavity with wavy surfaces. International Journal of Heat and Mass Transfer 101, pages 637-647.
Crossref
F.S. Oğlakkaya & Canan Bozkaya. (2016) MHD natural convection in a semi-annulus enclosure filled with water-based nanofluid using DRBEM. Engineering Analysis with Boundary Elements 71, pages 151-163.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.