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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 78, 2020 - Issue 10
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Original Articles

Assessment of RANS and LES turbulence models for natural convection in a differentially heated square cavity

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Pages 560-594 | Received 03 Jul 2020, Accepted 26 Jul 2020, Published online: 13 Aug 2020

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Rafat Mohammadi & Nazanin Shahkarami. (2022) Performance improvement of rectangular microchannel heat sinks using nanofluids and wavy channels. Numerical Heat Transfer, Part A: Applications 82:10, pages 619-639.
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Articles from other publishers (7)

M. Belharizi, A. Khorsi, Tayeb Yahiaoui, O. Ladjedel, L. Adjlout, F. Zemani & O. Sikula. (2023) RANS and LES Computations of Natural Convection in a Square Cavity. Journal of Engineering Physics and Thermophysics 96:4, pages 1017-1027.
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Ihssane El Ghandouri, Anas El Maakoul, Said Saadeddine & Mohamed Meziane. (2022) A comprehensive review of methods used to improve the thermal performance of heat sinks in natural convection. Heat and Mass Transfer 59:5, pages 825-849.
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C.W. Hollingshead, A. Rashkovan & D.R. Novog. (2023) Flow regime transitions for Aiding flow around a heated cylinder: A numerical and experimental investigation. Nuclear Engineering and Design 405, pages 112206.
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A. Sibo Anthony, Huirem Neeranjan Singh & Tikendra Nath Verma. (2023) Computation of turbulent natural convection in an enclosure with differential flux models. International Journal of Heat and Mass Transfer 202, pages 123659.
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M. A. Sayed, A. Dehbi, M. Hadžiabić, B. Ničeno & K. Mikityuk. (2022) CFD Simulation of Particle-Laden Flow in a 3D Differentially Heated Cavity Using Coarse Large Eddy Simulation. Flow, Turbulence and Combustion 109:4, pages 961-990.
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Constantinos Katsamis, Tim Craft, Hector Iacovides & Juan C. Uribe. (2022) Use of 2-D and 3-D unsteady RANS in the computation of wall bounded buoyant flows. International Journal of Heat and Fluid Flow 93, pages 108914.
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Marco Colombo & Michael Fairweather. (2021) Study of nuclear reactor external vessel passive cooling using computational fluid dynamics. Nuclear Engineering and Design 378, pages 111186.
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