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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 45, 2004 - Issue 4
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Original Articles

NUMERICAL CALCULATIONS OF HEAT TRANSFER AND FRICTION CHARACTERISTICS IN RECTANGULAR DUCTS WITH SLIT AND SOLID RIBS MOUNTED ON ONE WALL

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Pages 363-375 | Received 01 Jul 2002, Accepted 01 Jun 2003, Published online: 17 Aug 2010

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Read on this site (5)

Peyman Mayeli, Hanieh Hesami, Hossein Besharati-Foumani & Mehdi Niajalili. (2018) Al2O3–Water nanofluid heat transfer and entropy generation in a ribbed channel with wavy wall in the presence of magnetic field. Numerical Heat Transfer, Part A: Applications 73:9, pages 604-623.
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Kwang-Jin Sa, Arshad Afzal & Kwang-Yong Kim. (2018) Performance Analysis and Design Optimization of Gapped Pin-Fin in a Cooling Channel. Heat Transfer Engineering 39:6, pages 549-567.
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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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Li-Zhi Zhang. (2007) Thermally Developing Forced Convection and Heat Transfer in Rectangular Plate-Fin Passages Under Uniform Plate Temperature. Numerical Heat Transfer, Part A: Applications 52:6, pages 549-564.
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Sowjanya Vijiapurapu & Jie Cui. (2007) Simulation of Turbulent Flow in a Ribbed Pipe Using Large Eddy Simulation. Numerical Heat Transfer, Part A: Applications 51:12, pages 1137-1165.
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Articles from other publishers (22)

Sina Javanmard & Ali Ashrafizadeh. (2023) A comparative numerical study on heat transfer and pressure drop characteristics of perforated ribs. International Journal of Thermal Sciences 191, pages 108373.
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Mayank Bhola & Satyendra Singh. (2022) Analysis of heat transfer of turbulent channel using different geometries using ANSYS. Materials Today: Proceedings 64, pages 1223-1228.
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K. Sreekesh, D. K. Tafti & S. Vengadesan. (2021) Large-Eddy Simulation Investigation of Modified Rib Shapes on Heat Transfer in a Ribbed Duct. Journal of Heat Transfer 143:11.
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Xin Li, Gongnan Xie, Jian Liu & Bengt Sunden. (2020) Parametric study on flow characteristics and heat transfer in rectangular channels with strip slits in ribs on one wall. International Journal of Heat and Mass Transfer 149, pages 118396.
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BABU PALLI SYAM, SRIMATHULA SRIKANTH, B. S. V. RAMA RAO & YUVARAJ MANDA AKHIL. (2020) NUMERICAL SIMULATION FOR HEAT SWAPPING BEHAVIOR ON VARIOUS PIPE GEOMETRIES. i-manager's Journal on Mechanical Engineering 10:3, pages 38.
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Manda Akhil Yuvaraj & Geeri Satish. (2020) Comparative study of different pipe geometries using CFD. Materials Today: Proceedings 33, pages 5384-5391.
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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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Daren Zheng, Xinjun Wang & Qi Yuan. (2019) The flow and heat transfer characteristics in a rectangular channel with convergent and divergent slit ribs. International Journal of Heat and Mass Transfer 141, pages 464-475.
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Daren Zheng, Xinjun Wang & Qi Yuan. (2019) Numerical investigation on the flow and heat transfer characteristics in a rectangular channel with V-shaped slit ribs. Infrared Physics & Technology 101, pages 56-67.
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Andallib Tariq, Naveen Sharma & Manish Mishra. (2018) Aerothermal Characteristics of Solid and Slitted Pentagonal Rib Turbulators. Journal of Heat Transfer 140:6.
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Xin-Yi Tang, Ying-Yuan Tan & Gao Cao. (2016) WITHDRAWN: Combination effects of discrete inclined ribbed-grooved array on fluid flow and heat transfer characteristics in rectangular channel. Applied Thermal Engineering.
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Promthaisong Pitak, Eiamsa-Ard Petpices, Jedsadaratanachai Withada & Eiamsa-Ard Smith. (2016) Turbulent heat transfer and pressure loss in a square channel with discrete broken V-rib turbulators. Journal of Hydrodynamics 28:2, pages 275-283.
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Lu Zheng, Yonghui Xie, Di Zhang & Haoning Shi. (2016) Flow and Heat Transfer Characteristics in Channels With Groove–Protrusions and Combination Effect With Ribs. Journal of Heat Transfer 138:1.
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Xin-Yi Tang, Gan Jiang & Gao Cao. (2015) Parameters study and analysis of turbulent flow and heat transfer enhancement in narrow channel with discrete grooved structures. Chemical Engineering Research and Design 93, pages 232-250.
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Sombat Tamna, Sompol Skullong, Chinaruk Thianpong & Pongjet Promvonge. (2014) Heat transfer behaviors in a solar air heater channel with multiple V-baffle vortex generators. Solar Energy 110, pages 720-735.
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Abdulmajeed A. Ramadhan, Yaser T. Al Anii & Amer J. Shareef. (2012) Groove geometry effects on turbulent heat transfer and fluid flow. Heat and Mass Transfer 49:2, pages 185-195.
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Pongjet Promvonge, Wayo Changcharoen, Sutapat Kwankaomeng & Chinaruk Thianpong. (2011) Numerical heat transfer study of turbulent square-duct flow through inline V-shaped discrete ribs. International Communications in Heat and Mass Transfer 38:10, pages 1392-1399.
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P. Promvonge, C. Khanoknaiyakarn, S. Kwankaomeng & C. Thianpong. (2011) Thermal behavior in solar air heater channel fitted with combined rib and delta-winglet. International Communications in Heat and Mass Transfer 38:6, pages 749-756.
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R.J. Goldstein, 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, V. Srinivasan, K. Ghosh & R. Mittal. (2010) Heat transfer—A review of 2004 literature. International Journal of Heat and Mass Transfer 53:21-22, pages 4343-4396.
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H. C. Chan, Yaoxin Zhang, J. M. Leu & Y.-S. Chen. (2011) Numerical Calculation of Turbulent Channel Flow with Porous Ribs. Journal of Mechanics 26:1, pages 15-28.
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Teerapat Chompookham, Chinaruk Thianpong, Sutapat Kwankaomeng & Pongjet Promvonge. (2010) Heat transfer augmentation in a wedge-ribbed channel using winglet vortex generators. International Communications in Heat and Mass Transfer 37:2, pages 163-169.
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Smith Eiamsa-ard & Pongjet Promvonge. (2008) Numerical study on heat transfer of turbulent channel flow over periodic grooves. International Communications in Heat and Mass Transfer 35:7, pages 844-852.
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