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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 53, 2008 - Issue 11
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Original Articles

Forced Convection Over a Backward-Facing Step with a Porous Floor Segment

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Pages 1211-1230 | Received 27 Aug 2007, Accepted 21 Nov 2007, Published online: 04 Feb 2008

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

Read on this site (4)

Wagner C. Galuppo & Marcelo J. S. de Lemos. (2017) Turbulent heat transfer past a sudden expansion with a porous insert using a nonlinear model. Numerical Heat Transfer, Part A: Applications 71:3, pages 290-310.
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M. Zeng, P. Yu, F. Xu & Q.W. Wang. (2013) Natural Convection in Triangular Attics Filled with Porous Medium Heated from Below. Numerical Heat Transfer, Part A: Applications 63:10, pages 735-754.
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Tien-Mo Shih, Martinus Arie & Derrick Ko. (2011) Literature Survey of Numerical Heat Transfer (2000–2009): Part II. Numerical Heat Transfer, Part A: Applications 60:11-12, pages 883-1096.
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D. Senthil Kumar, K. Murugesan & Akhilesh Gupta. (2009) Thermo-Solutal Buoyancy Induced Mixed Convection in a Backward Facing Step Channel using Velocity-Vorticity Formulation. Numerical Heat Transfer, Part A: Applications 56:7, pages 604-630.
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Articles from other publishers (13)

Hassan Talaei & Hamid-Reza Bahrami. (2023) Backward-facing step heat transfer enhancement: a systematic study using porous baffles with different shapes and locations and corrugating after step wall. Heat and Mass Transfer 59:12, pages 2213-2230.
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James K. Arthur. (2023) A narrow-channeled backward-facing step flow with or without a pin–fin insert: Flow in the separated region. Experimental Thermal and Fluid Science 141, pages 110791.
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Viktor I. Terekhov, Aleksey Yu. Dyachenko, Yaroslav J. Smulsky, Tatyana V. Bogatko & Nadezhda I. YaryginaViktor I. Terekhov, Aleksey Yu. Dyachenko, Yaroslav J. Smulsky, Tatyana V. Bogatko & Nadezhda I. Yarygina. 2022. Heat Transfer in Subsonic Separated Flows. Heat Transfer in Subsonic Separated Flows 203 217 .
Rui Hou & Peisuo Li. (2020) Flow control and heat transfer enhancement inside a two-dimensional channel using porous blocks and applying bleeding condition between them. Journal of Thermal Analysis and Calorimetry 143:3, pages 2609-2620.
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James K Arthur & Owen Schiele. (2021) Numerical Analysis of Enhanced Heat Transfer Using a Pair of Similar Porous Baffles in a Backward-Facing Step Flow. Journal of Fluid Flow, Heat and Mass Transfer.
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Ziqiang Zhao. (2020) Numerical modeling and simulation of heat transfer and fluid flow in a two-dimensional sudden expansion model using porous insert behind that. Journal of Thermal Analysis and Calorimetry 141:5, pages 1933-1942.
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Chuanchang Li, Guohua Cui, Jianguang Zhai, Saixuan Chen & Zhi Hu. (2020) Enhanced heat transfer and flow analysis in a backward-facing step using a porous baffle. Journal of Thermal Analysis and Calorimetry 141:5, pages 1919-1932.
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V. V. Terekhov & V. I. Terekhov. (2017) Effect of surface permeability on the structure of a separated turbulent flow and heat transfer behind a backward-facing step. Journal of Applied Mechanics and Technical Physics 58:2, pages 254-263.
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Won-Hyun Kim & Tae-Seon Park. (2012) Effects of Prandtl Numbers on Heat Transfer of Backward-Facing Step Laminar Flow with a Pulsating Inlet. Transactions of the Korean Society of Mechanical Engineers B 36:9, pages 923-930.
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Xiao Bing Chen, Yi Sui, Yong Pan Cheng, Heow Pueh Lee, Peng Yu, S.H. Winoto & Hong Tong Low. (2010) Mass transport in a microchannel enzyme reactor with a porous wall: Hydrodynamic modeling and applications. Biochemical Engineering Journal 52:2-3, pages 227-235.
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Xiao Bing Chen, Yi Sui, Heow Pueh Lee, Hui Xing Bai, Peng Yu, S. H. Winoto & Hong Tong Low. (2010) Mass Transport in a Microchannel Bioreactor With a Porous Wall. Journal of Biomechanical Engineering 132:6.
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X. B. Chen, P. Yu, Y. Sui, S. H. Winoto & H. T. Low. (2008) Natural Convection in a Cavity Filled with Porous Layers on the Top and Bottom Walls. Transport in Porous Media 78:2, pages 259-276.
Crossref
X.B. Chen, P. Yu, S.H. Winoto & H.T. Low. (2009) Numerical analysis for the flow past a porous trapezoidal‐cylinder based on the stress‐jump interfacial‐conditions. International Journal of Numerical Methods for Heat & Fluid Flow 19:2, pages 223-241.
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