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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 17, 1990 - Issue 4
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Original Articles

FULLY DEVELOPED MIXED CONVECTION IN A HORIZONTAL CHANNEL HEATED UNIFORMLY FROM ABOVE AND BELOW

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Pages 417-430 | Received 29 Aug 1989, Accepted 19 Dec 1989, Published online: 27 Apr 2007

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Tien-Mo Shih & MichaelM. Ohadi. (1993) LITERATURE SURVEY ON NUMERICAL HEAT TRANSFER (1990-1991). Numerical Heat Transfer, Part A: Applications 23:2, pages 129-169.
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Articles from other publishers (13)

Yanjun Chen, Chenhao Du, Zhoumiao Wang & Deqiang He. (2024) Mixed Convective Heat Transfer Characteristics of Graphene Nanofluid Strengthened by Periodically Direction-Switching Electric Field. Journal of Thermal Science and Engineering Applications 16:1.
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Yanjun Chen, Zhoumiao Wang, Jiahuan He, Xiuliang Liu & Deqiang He. (2023) Experimental analysis of electrical field combining nanofluids to enhance the mixed convective heat transfer in the rectangular channel. Applied Thermal Engineering 227, pages 120432.
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C. S. Yang, D. Z. Jeng, C. W. Liu, C. G. Liu & C. Gau. (2010) Fluid Flow and Heat Transfer in a Horizontal Channel With Divergent Top Wall and Heated From Below. Journal of Heat Transfer 132:8.
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Hussein A. Mohammed & Yasin K. Salman. (2007) Combined natural and forced convection heat transfer for assisting thermally developing flow in a uniformly heated vertical circular cylinder. International Communications in Heat and Mass Transfer 34:4, pages 474-491.
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C.W. Liu & C. Gau. (2004) Onset of secondary flow and enhancement of heat transfer in horizontal convergent and divergent channels heated from below. International Journal of Heat and Mass Transfer 47:25, pages 5427-5438.
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S.W Chen, C.Y Chang, J.T Lir & T.F Lin. (2004) Stabilization and elimination of transient unstable mixed convective vortex flow of air in a bottom heated horizontal flat duct by top plate heating. International Journal of Heat and Mass Transfer 47:19-20, pages 4137-4152.
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Tsing-Fa Lin. (2003) Buoyancy driven vortex flow and thermal structures in a very low Reynolds number mixed convective gas flow through a horizontal channel. International Journal of Heat and Fluid Flow 24:3, pages 299-309.
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M M Salah El-Din. (2005) Effect of viscous dissipation on laminar mixed convection in a horizontal channel. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 216:3, pages 167-172.
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M.M. Salah El-Din. (2002) Effect of viscous dissipation on laminar mixed convection in a horizontal double-passage channel with uniform wall heat flux. International Journal of Thermal Sciences 41:8, pages 787-794.
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W.L. Lin & T.F. Lin. (1996) Experimental study of unstable mixed convection of air in a bottom heated horizontal rectangular duct. International Journal of Heat and Mass Transfer 39:8, pages 1649-1663.
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C.C. Huang & T.F. Lin. (1995) Vortex flow and thermal characteristics in mixed convection of air in a horizontal rectangular duct: effects of the Reynolds and Grashof numbers. International Journal of Heat and Mass Transfer 38:9, pages 1661-1674.
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C.C Huang & T.F Lin. (1994) Buoyancy induced flow transition in mixed convective flow of air through a bottom heated horizontal rectangular duct. International Journal of Heat and Mass Transfer 37:8, pages 1235-1255.
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Frederick L. Shope. (1994) Conjugate conduction-convection heat transfer with a high-speed boundary layer. Journal of Thermophysics and Heat Transfer 8:2, pages 275-281.
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