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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 40, 2001 - Issue 2
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Original Articles

NATURAL CONVECTION IN A TWO-DIMENSIONAL DIFFERENTIALLY HEATED SQUARE ENCLOSURE UNDERGOING ROTATION

Pages 181-202 | Published online: 29 Oct 2010

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Read on this site (5)

Stepan A. Mikhailenko & Mikhail A. Sheremet. (2017) Convective heat transfer combined with surface radiation in a rotating square cavity with a local heater. Numerical Heat Transfer, Part A: Applications 72:9, pages 697-707.
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Tien-Mo Shih, Chandrasekhar Thamire, Chao-Ho Sung & An-Lu Ren. (2010) Literature Survey of Numerical Heat Transfer (2000–2009): Part I. Numerical Heat Transfer, Part A: Applications 57:3-4, pages 159-296.
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Kamil Kahveci. (2007) A Differential Quadrature Solution of Natural Convection in an Enclosure with a Finite-Thickness Partition. Numerical Heat Transfer, Part A: Applications 51:10, pages 979-1002.
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JalalM. Jalil & KaysA. Al-Tae'y. (2007) The Effect of Nonuniform Magnetic Field on Natural Convection in an Enclosure. Numerical Heat Transfer, Part A: Applications 51:9, pages 899-917.
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John P. Abraham & Ephraim M. Sparrow. (2003) THREE-DIMENSIONAL LAMINAR AND TURBULENT NATURAL CONVECTION IN A CONTINUOUSLY/DISCRETELY WALL-HEATED ENCLOSURE CONTAINING A THERMAL LOAD. Numerical Heat Transfer, Part A: Applications 44:2, pages 105-125.
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Articles from other publishers (13)

Abeer Alhashash & Habibis Saleh. (2022) Free convection flow of a heterogeneous mixture of water and nano-encapsulated phase change particle (NEPCP) in enclosure subject to rotation. Journal of Energy Storage 51, pages 104168.
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P. G. Siddheshwar & B. N. Veena. (2021) Effect of Non-inertial Acceleration on Brinkman–Bénard Convection in Water-Copper Nanoliquid-Saturated Porous Enclosures. International Journal of Applied and Computational Mathematics 7:3.
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Guojun Yu, Zhiwei Lian, Wei Gan & Jun Ji. (2020) Numerical investigation on the effect of harmonic horizontal-axis rotation on laminar natural convection in an air-filled enclosure. International Journal of Heat and Mass Transfer 152, pages 119533.
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Yu, Zhang, Jia, Geng & Liu. (2019) Numerical Study on the Natural Convection of Air in a Cubic Cavity Subjected to a Yawing Motion. Journal of Marine Science and Engineering 7:7, pages 204.
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H. Saleh & I. Hashim. (2016) Magnetohydrodynamic Natural Convection in a Rotating Enclosure. Advances in Applied Mathematics and Mechanics 8:2, pages 279-292.
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Rihani Chokri & Ben-Beya Brahim. (2016) Three-dimensional natural convection of molten Lithium in a differentially heated rotating cubic cavity about a vertical ridge. Powder Technology 291, pages 97-109.
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H. Saleh & I. Hashim. (2014) Numerical Analysis of Nanofluids in Differentially Heated Enclosure Undergoing Orthogonal Rotation. Advances in Mathematical Physics 2014, pages 1-11.
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H. Saleh, A.Y.N. Alhashash & I. Hashim. (2013) Rotation effects on non-Darcy convection in an enclosure filled with porous medium. International Communications in Heat and Mass Transfer 43, pages 105-111.
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J.C. Mandal & C.R. Sonawane. (2013) Simulation of flow inside differentially heated rotating cavity. International Journal of Numerical Methods for Heat & Fluid Flow 23:1, pages 23-54.
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Mustafa Tutar & Ferruh Erdogdu. (2012) Numerical simulation for heat transfer and velocity field characteristics of two-phase flow systems in axially rotating horizontal cans. Journal of Food Engineering 111:2, pages 366-385.
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Shohel Mahmud & Roydon Andrew Fraser. (2007) Visualizing energy flows through energy streamlines and pathlines. International Journal of Heat and Mass Transfer 50:19-20, pages 3990-4002.
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Nadeem Hasan & Sanjeev Sanghi. (2007) On the Role of Coriolis Force in a Two-Dimensional Thermally Driven Flow in a Rotating Enclosure. Journal of Heat Transfer 129:2, pages 179-187.
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R.J Goldstein, E.R.G Eckert, W.E Ibele, S.V Patankar, T.W Simon, T.H Kuehn, P.J Strykowski, K.K Tamma, J.V.R Heberlein, J.H Davidson, J Bischof, F.A Kulacki, U Kortshagen & S Garrick. (2003) Heat transfer––a review of 2001 literature. International Journal of Heat and Mass Transfer 46:11, pages 1887-1992.
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