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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 21, 1992 - Issue 2
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Original Articles

NUMERICAL SIMULATION OF BUOYANT AND THERMOCAPILLARY CONVECTION IN A SQUARE CAVITY

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Pages 121-141 | Received 05 Feb 1991, Accepted 01 Apr 1991, Published online: 27 Apr 2007

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A. Zachár & A. Aszódi. (2007) Numerical Analysis of Flow Distributors to Improve Temperature Stratification in Storage Tanks. Numerical Heat Transfer, Part A: Applications 51:10, pages 919-940.
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Lan Peng, You-Rong Li, Ying-Jie Liu, Nobuyuki Imaishi, Tien-Chien Jen & Qing-Hua Chen. (2007) Bifurcation and Hysteresis of Flow Pattern Transition in a Shallow Molten Silicon Pool with Cz Configuration. Numerical Heat Transfer, Part A: Applications 51:3, pages 211-223.
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Tien-Mo Shih, M. M. Ohadi & Wei Liu. (1996) LITERATURE SURVEY ON NUMERICAL HEAT TRANSFER (1992–1993). Numerical Heat Transfer, Part A: Applications 29:5, pages 441-484.
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Articles from other publishers (20)

A. N. Colli & J. M. Bisang. (2023) Exploring the Impact of Concentration and Temperature Variations on Transient Natural Convection in Metal Electrodeposition: A Finite Volume Method Analysis. Journal of The Electrochemical Society 170:8, pages 083505.
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Tahmidul Haque Ruvo, HM Toufik Ahmed Zisan & Sumon Saha. (2022) Analysis of conjugate Marangoni natural convection in a heating system with an open boundary flow. International Communications in Heat and Mass Transfer 138, pages 106402.
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Joel H. Ferziger, Milovan Perić & Robert L. StreetJoel H. Ferziger, Milovan Perić & Robert L. Street. 2020. Numerische Strömungsmechanik. Numerische Strömungsmechanik 1 24 .
W. A. Hay & M. V. Papalexandris. (2019) Numerical simulations of turbulent thermal convection with a free-slip upper boundary. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 475:2232, pages 20190601.
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Aleksandra Pachalieva, Christoph A. Niedermeier & Thomas Indinger. (2019) Massively Parallel GPU Implementation of the Lattice-Boltzmann Method for the Simulation of Coupled Aero-Thermodynamic Systems. International Journal of Automotive Engineering 10:1, pages 125-132.
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M.A. Gómez, J. Collazo, J. Porteiro & J.L. Míguez. (2018) Numerical study of the thermal behaviour of a water heater tank with a corrugated coil. International Journal of Heat and Mass Transfer 122, pages 574-586.
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Koichi Kakimoto & Bing Gao. 2015. Handbook of Crystal Growth. Handbook of Crystal Growth 845 870 .
Rachid Es Sakhy, Kamal El Omari, Yves Le Guer & Serge Blancher. (2014) Rayleigh–Bénard–Marangoni convection in an open cylindrical container heated by a non-uniform flux. International Journal of Thermal Sciences 86, pages 198-209.
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Sylvana Varela, Gabriel Usera, Anton Vernet & Josep A. Ferrè. (2013) Numerical simulation of flow structures and temperature distribution in a Printed Circuit Board enclosure model at moderate Reynolds numbers. International Journal of Thermal Sciences 70, pages 1-9.
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B. Gao, X.J. Chen, S. Nakano, S. Nishizawa & K. Kakimoto. (2010) Analysis of SiC crystal sublimation growth by fully coupled compressible multi-phase flow simulation. Journal of Crystal Growth 312:22, pages 3349-3355.
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B. Gao, S. Nakano & K. Kakimoto. (2010) Global Simulation of Coupled Carbon and Oxygen Transport in a Unidirectional Solidification Furnace for Solar Cells. Journal of The Electrochemical Society 157:2, pages H153.
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Dietrich Schwabe. (2007) Convective instabilities in complex systems with partly free surface. Journal of Physics: Conference Series 64, pages 012001.
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Raouf A. Ibrahim. 2009. Liquid Sloshing Dynamics. Liquid Sloshing Dynamics.
P. Hintz, D. Schwabe & H. Wilke. (2001) Convection in a Czochralski crucible – Part 1: non-rotating crystal. Journal of Crystal Growth 222:1-2, pages 343-355.
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M. Kassemi & N. Rashidnia. (2000) Steady and oscillatory thermocapillary convection generated by a bubble. Physics of Fluids 12:12, pages 3133-3146.
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M. Kassemi, N. Rashidnia, M. Kassemi & N. Rashidnia. (1997) Steady and oscillatory flows generated by a bubble in 1-g and low-g environments. Steady and oscillatory flows generated by a bubble in 1-g and low-g environments.
M. Kassemi & N. Rashidnia. (1996) Thermocapillary and natural convective flows generated by a bubble in 1-g and low-g environments. Thermocapillary and natural convective flows generated by a bubble in 1-g and low-g environments.
M Mundrane, J Xu & A Zebib. (1995) Thermocapillary convection in a rectangular cavity with a deformable interface. Advances in Space Research 16:7, pages 41-53.
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M. Mundrane & A. Zebib. (1994) Oscillatory buoyant thermocapillary flow. Physics of Fluids 6:10, pages 3294-3305.
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M. Mundrane & A. Zebib. (1994) Steady and oscillatory buoyant thermocapillary convection. Computational Mechanics 14:5, pages 411-419.
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