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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 37, 2000 - Issue 3
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Original Articles

TURBULENT FLOW AND HEAT TRANSFER IN A CHANNEL WITH A SQUARE BAR DETACHED FROM THE WALL

Pages 289-306 | Published online: 29 Oct 2010

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Sampad Gobinda Das, Suvanjan Bhattacharyya, Himadri Chattopadhyay & Ali Cemal Benim. (2022) Transport Phenomenon of Simultaneously Developing Flow and Heat Transfer in Twisted Sinusoidal Wavy Microchannel under Pulsating Inlet Flow Condition. Heat Transfer Engineering 43:3-5, pages 410-422.
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Sa'ed A. Musmar, A. T. Al-Halhouli, Iskander Tlili & S. Büttgenbach. (2016) Performance Analysis of a New Water-based Microcooling System. Experimental Heat Transfer 29:4, pages 485-499.
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Nuri Yucel & Nureddin Dinler. (2006) Numerical Study of Laminar and Turbulent Flow Through a Pipe with Fins Attached. Numerical Heat Transfer, Part A: Applications 49:2, pages 195-214.
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Yue-Tzu Yang & Cheng-Wei Hwang. (2004) NUMERICAL CALCULATIONS OF HEAT TRANSFER AND FRICTION CHARACTERISTICS IN RECTANGULAR DUCTS WITH SLIT AND SOLID RIBS MOUNTED ON ONE WALL. Numerical Heat Transfer, Part A: Applications 45:4, pages 363-375.
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Articles from other publishers (22)

Sampad Gobinda Das, Suvanjan Bhattacharyya & Himadri Chattopadhyay. 2023. Fluid Mechanics and Fluid Power (Vol. 3). Fluid Mechanics and Fluid Power (Vol. 3) 619 624 .
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 129 177 .
Jojomon Joseph, Danish Rehman, Michel Delanaye, Gian Luca Morini, Rabia Nacereddine, Jan G. Korvink & Juergen J. Brandner. (2020) Numerical and Experimental Study of Microchannel Performance on Flow Maldistribution. Micromachines 11:3, pages 323.
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Dehai Kong, V.N. Afanasiev, S.A. Isaev & D.V. Nikushchenko. (2020) Jet vortex heat transfer in turbulent air flow around a plate with a slit rib. International Journal of Heat and Mass Transfer 146, pages 118867.
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V I Terekhov & T V Bogatko. (2019) The structure of separated flow and heat transfer in a round tube with single detached diaphragm. Journal of Physics: Conference Series 1382:1, pages 012045.
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D H Kong, V N Afanasiev & P A Semenev. (2019) Numerical study on the influence of slit shapes and sizes between the lower wall and the plate on turbulent flow and heat transfer characteristics. Journal of Physics: Conference Series 1369:1, pages 012017.
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Jojomon Joseph, Michel Delanaye, Rabia Nacereddine, Andres Giraldo, Mehdi Rouabah, Jan G. Korvink & Juergen J. Brandner. (2019) Numerical and experimental investigation of a wire-net compact heat exchanger performance for high-temperature applications. Applied Thermal Engineering 154, pages 208-216.
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K. Amghar, M. A. Louhibi, H. Bouali, N. Salhi & M. Salhi. 2019. Proceedings of the 1st International Conference on Electronic Engineering and Renewable Energy. Proceedings of the 1st International Conference on Electronic Engineering and Renewable Energy 746 754 .
Tatyana Bogatko & Viktor Terekhov. (2016) Thermal hydraulic efficiency of a single diaphragm established with a clearance in a circular tube. MATEC Web of Conferences 92, pages 01063.
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Alper Yilmaz. (2014) Dimensioning of ducts for maximal volumetric heat transfer taking both laminar and turbulent flow possibilities into consideration. Heat and Mass Transfer 51:4, pages 543-552.
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G.A. Rivas, E.C. Garcia & M. Assato. (2011) Forced turbulent heat convection in a square duct with non-uniform wall temperature. International Communications in Heat and Mass Transfer 38:7, pages 844-851.
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Wayo Changcharoen & Smith Eiamsa-ard. (2011) Numerical investigation of turbulent heat transfer in channels with detached rib-arrays. Heat Transfer-Asian Research 40:5, pages 431-447.
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M. Meis, F. Varas, A. Velázquez & J.M. Vega. (2010) Heat transfer enhancement in micro-channels caused by vortex promoters. International Journal of Heat and Mass Transfer 53:1-3, pages 29-40.
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Zuojin Zhu, Hongxing Yang & Tingyao Chen. (2010) Numerical study of turbulent heat and fluid flow in a straight square duct at higher Reynolds numbers. International Journal of Heat and Mass Transfer 53:1-3, pages 356-364.
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Hongxing Yang, Tingyao Chen & Zuojin Zhu. (2009) Numerical study of forced turbulent heat convection in a straight square duct. International Journal of Heat and Mass Transfer 52:13-14, pages 3128-3136.
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T.H. Ko & C.P. Wu. (2009) A numerical study on entropy generation induced by turbulent forced convection in curved rectangular ducts with various aspect ratios. International Communications in Heat and Mass Transfer 36:1, pages 25-31.
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Shiang-Wuu Perng & Horng-Wen Wu. (2007) Buoyancy-aided/opposed convection heat transfer for unsteady turbulent flow across a square cylinder in a vertical channel. International Journal of Heat and Mass Transfer 50:19-20, pages 3701-3717.
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Nureddin Dinler & Nuri Yucel. (2006) Flow and heat transfer in a pipe with a fin attached to inner wall. Heat and Mass Transfer 43:8, pages 817-825.
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Ravi Prattipati & Chengxian Lin. (2006) Experimental Investigation of Heat Transfer in a Microchannel with Vortex-Generators. Experimental Investigation of Heat Transfer in a Microchannel with Vortex-Generators.
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, A. Bar-Cohen, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F.A. Kulacki, U. Kortshagen & S. Garrick. (2002) Heat transfer – a review of 2000 literature. International Journal of Heat and Mass Transfer 45:14, pages 2853-2957.
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Alvaro Valencia & Marcela Cid. (2002) Turbulent unsteady flow and heat transfer in channels with periodically mounted square bars. International Journal of Heat and Mass Transfer 45:8, pages 1661-1673.
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Jaime Alvarez, Mirko Pap & Alvaro Valencia. (2000) Turbulent heat transfer in a channel with bars in tandem and in side by side arrangements. International Journal of Numerical Methods for Heat & Fluid Flow 10:8, pages 877-895.
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