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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 70, 2016 - Issue 10
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Original Articles

Free convection enhancement in an annulus between horizontal confocal elliptical cylinders using hybrid nanofluids

&
Pages 1141-1156 | Received 13 Apr 2016, Accepted 09 Aug 2016, Published online: 20 Oct 2016

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

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Farhan Ali, Showkat Ahmad Lone, Afrah Al-Bossly, Fuad S. Alduais & Anwar Saeed. (2023) Second law analysis on cross flow of hybrid nanoliquid in a Darcy–Forchheimer medium with thermal radiative flow. Numerical Heat Transfer, Part B: Fundamentals 0:0, pages 1-23.
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Mustapha Boussoufi & Amina Sabeur. (2023) Natural convective nanofluid flow characteristics with Brownian motion effect in an annular space between confocal elliptic cylinders. Numerical Heat Transfer, Part A: Applications 83:10, pages 1130-1145.
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Prince Kumar, Ritesh Dwivedi & Krishna Murari Pandey. (2023) Hybrid-nanofluid Flow through Partially Porous Wavy Channels: Thermo-hydraulic Performance and Entropy Analysis. Heat Transfer Engineering 0:0, pages 1-22.
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M. K. Nayak, G. Mahanta, M. Das & S. Shaw. (2022) Entropy analysis of a 3D nonlinear radiative hybrid nanofluid flow between two parallel stretching permeable sheets with slip velocities. International Journal of Ambient Energy 43:1, pages 8710-8721.
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Ali Rehman, Zai-Yin He, Miao-Kun Wang, Omar A. Almaghrabi, Shami A. M. Alsallami & Waris Khan. (2022) Analytical study of time-dependent Mgnatohydrodynomics flow of hybrid nanofluid around a rotating sphere. Waves in Random and Complex Media 0:0, pages 1-18.
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Ali Rehman, Anwar Saeed & Muhammad Bilal. (2022) Analytical study of three-dimensional MHD hybrid nanofluid flow along with thermal characteristics and radiative solar energy. Waves in Random and Complex Media 0:0, pages 1-15.
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Nessrin Manaa, Awatef Abidi, Ahamed Saleel C.Jamel Madiouli & Mohammed Naceur Borjini. (2021) Three-Dimensional Numerical Analysis on Performance Enhancement of Micropolar Hybrid Nanofluid in Comparison with Simple Nanofluid. Heat Transfer Engineering 42:18, pages 1590-1610.
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Tahar Tayebi & Ali J. Chamkha. (2017) Natural convection enhancement in an eccentric horizontal cylindrical annulus using hybrid nanofluids. Numerical Heat Transfer, Part A: Applications 71:11, pages 1159-1173.
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Hang Xu. (2019) Modelling unsteady mixed convection of a nanofluid suspended with multiple kinds of nanoparticles between two rotating disks by generalized hybrid model. International Communications in Heat and Mass Transfer 108, pages 104275.
Crossref
A.S. Dogonchi, M. Waqas & D.D. Ganji. (2019) Shape effects of Copper-Oxide (CuO) nanoparticles to determine the heat transfer filled in a partially heated rhombus enclosure: CVFEM approach. International Communications in Heat and Mass Transfer 107, pages 14-23.
Crossref
Hang Xu & Qiang Sun. (2019) Generalized Hybrid Nanofluid Model with the Application of Fully Developed Mixed Convection Flow in a Vertical Microchannel*. Communications in Theoretical Physics 71:8, pages 903.
Crossref
Ali J. Chamkha, A. S. Dogonchi & D. D. Ganji. (2019) Magneto-hydrodynamic flow and heat transfer of a hybrid nanofluid in a rotating system among two surfaces in the presence of thermal radiation and Joule heating. AIP Advances 9:2.
Crossref
Mohammad Ghalambaz, Mikhail A. Sheremet, S. A. M. Mehryan, Farshad M. Kashkooli & Ioan Pop. (2018) Local thermal non-equilibrium analysis of conjugate free convection within a porous enclosure occupied with Ag–MgO hybrid nanofluid. Journal of Thermal Analysis and Calorimetry 135:2, pages 1381-1398.
Crossref
Nepal Chandra Roy. (2018) Natural convection of nanofluids in a square enclosure with different shapes of inner geometry. Physics of Fluids 30:11.
Crossref
Seong Hyun Park, Yeong Min Seo, Man Yeong Ha & Yong Gap Park. (2018) Natural convection in a square enclosure with different positions and inclination angles of an elliptical cylinder Part I: A vertical array of one elliptical cylinder and one circular cylinder. International Journal of Heat and Mass Transfer 126, pages 173-183.
Crossref
Tanzila Hayat, S. Nadeem & A. U. Khan. (2018) Rotating flow of Ag-CuO/H2O hybrid nanofluid with radiation and partial slip boundary effects. The European Physical Journal E 41:6.
Crossref
Hamid Reza Ashorynejad & Alireza Shahriari. (2018) MHD natural convection of hybrid nanofluid in an open wavy cavity. Results in Physics 9, pages 440-455.
Crossref
K. Kalidasan, R. Velkennedy & P. Rajesh Kanna. (2017) Laminar natural convection of Copper - Titania/Water hybrid nanofluid in an open ended C - shaped enclosure with an isothermal block. Journal of Molecular Liquids 246, pages 251-258.
Crossref
S.A.M. Mehryan, Farshad M. Kashkooli, Mohammad Ghalambaz & Ali J. Chamkha. (2017) Free convection of hybrid Al2O3-Cu water nanofluid in a differentially heated porous cavity. Advanced Powder Technology 28:9, pages 2295-2305.
Crossref
Chen Yang, Xiaowei Wu, Yongkun Zheng & Ting Qiu. (2017) Heat transfer performance assessment of hybrid nanofluids in a parallel channel under identical pumping power. Chemical Engineering Science 168, pages 67-77.
Crossref

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