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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 55, 2009 - Issue 10
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Original Articles

Large-Eddy Simulations and Heat-Flux Modeling in a Turbulent Impinging Jet

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Pages 906-930 | Received 23 Aug 2008, Accepted 02 Apr 2009, Published online: 12 May 2009

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

Read on this site (15)

Dushyant Singh, Udayraj, Ashutosh Narayan Singh & Jishnu Handique. (2024) Experimental and LES study of unconfined jet impingement on a smooth flat heated plate with slots of different widths. Experimental Heat Transfer 37:1, pages 15-54.
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Arkadiusz Ryfa, Marek Rojczyk & Wojciech Adamczyk. (2021) Determination of Heat Transfer Coefficient for Array of Free Surface Water Jets. Heat Transfer Engineering 42:3-4, pages 296-307.
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Yongping Li, Liang Zhang, Qizhao Lin & Zuojin Zhu. (2017) Large Eddy Simulation of Normally Impinging Round Air-Jet Heat Transfer at Moderate Reynolds Numbers. Heat Transfer Engineering 38:17, pages 1439-1448.
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Xiaowang Sun, C. K. Chan, Bowen Mei & Zuojin Zhu. (2016) LES of convective heat transfer and incompressible fluid flow past a square cylinder. Numerical Heat Transfer, Part A: Applications 69:10, pages 1106-1124.
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Rayhaneh Banyassady & Ugo Piomelli. (2015) Interaction of inner and outer layers in plane and radial wall jets. Journal of Turbulence 16:5, pages 460-483.
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Yinglin Li, C.K. Chan, Bowen Mei & Zuojin Zhu. (2015) LES of incompressible heat and fluid flows past a square cylinder at high Reynolds numbers. International Journal of Computational Fluid Dynamics 29:3-5, pages 272-285.
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Rabijit Dutta, Balaji Srinivasan & Anupam Dewan. (2013) LES of a Turbulent Slot Impinging Jet to Predict Fluid Flow and Heat Transfer. Numerical Heat Transfer, Part A: Applications 64:10, pages 759-776.
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Dushyant Singh, B. Premachandran & Sangeeta Kohli. (2013) Numerical Simulation of the Jet Impingement Cooling of a Circular Cylinder. Numerical Heat Transfer, Part A: Applications 64:2, pages 153-185.
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S.Z. Shuja. (2013) Jet Impingement onto a Hole with Different Barreling: Flow and Heat Transfer Analysis. Numerical Heat Transfer, Part A: Applications 63:7, pages 549-562.
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M. Rahimi-Esbo, A.A. Ranjbar, A. Ramiar, M. Rahgoshay & A. Arya. (2012) Numerical Study of the Turbulent Forced Convection Jet Flow of Nanofluid in a Converging Duct. Numerical Heat Transfer, Part A: Applications 62:1, pages 60-79.
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A. Ryfa, D. Ingham & R.A. Bialecki. (2012) Direct and Inverse Methods for an Air Jet Impingement. Numerical Heat Transfer, Part A: Applications 61:7, pages 547-568.
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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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MarceloJ. S. de Lemos & FelipeT. Dórea. (2011) Simulation of a Turbulent Impinging Jet into a Layer of Porous Material Using a Two–Energy Equation Model. Numerical Heat Transfer, Part A: Applications 59:10, pages 769-798.
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R.J. Jefferson-Loveday & P.G. Tucker. (2011) Wall-Resolved LES and Zonal LES of Round Jet Impingement Heat Transfer on a Flat Plate. Numerical Heat Transfer, Part B: Fundamentals 59:3, pages 190-208.
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R. J. Jefferson-Loveday & P. G. Tucker. (2010) LES of Impingement Heat Transfer on a Concave Surface. Numerical Heat Transfer, Part A: Applications 58:4, pages 247-271.
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Articles from other publishers (12)

Fatih Demir, Oguz Turgut & Tamer Calisir. (2023) Investigation of swirling impinging jet at low nozzle to plate distances. Journal of Thermal Analysis and Calorimetry 148:21, pages 11999-12016.
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Tianlun Huang, Simian Diao, Zhimin Yang, Zhigao Huang, Yun Zhang & Huamin Zhou. (2020) Flow dynamics and heat transfer characteristics analysis for floatation nozzle using large eddy simulation and proper orthogonal decomposition method. International Journal of Thermal Sciences 155, pages 106402.
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Robin Brakmann, Lingling Chen, Rico Poser, Jose Rodriguez, Michael Crawford & Bernhard Weigand. (2019) Heat transfer investigation of an array of jets impinging on a target plate with detached ribs. International Journal of Heat and Fluid Flow 78, pages 108420.
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Arkadiusz Ryfa, Marek Rojczyk & Wojciech Adamczyk. (2019) On influence of selected parameters on the spatial distribution of the heat transfer coefficient for an array of air jets. Applied Thermal Engineering 146, pages 21-29.
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Chuangxin He & Yingzheng Liu. (2018) A dynamic detached-eddy simulation model for turbulent heat transfer: Impinging jet. International Journal of Heat and Mass Transfer 127, pages 326-338.
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Sharad Pachpute & B. Premachandran. (2018) Experimental investigation and large eddy simulations of turbulent slot jet impingement cooling of a circular cylinder with and without a quadrilateral confinement. Applied Thermal Engineering 144, pages 854-876.
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Yongping Li, Qizhao Lin & Zuojin Zhu. (2017) LES of Normally Impinging Elliptic Air-Jet Heat Transfer at Re=4400. Advances in Applied Mathematics and Mechanics 9:2, pages 485-500.
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Pradeep Pantangi, Amsini Sadiki, Johannes Janicka, Markus Mann & Andreas Dreizler. (2014) LES of Premixed Methane Flame Impinging on the Wall Using Non-adiabatic Flamelet Generated Manifold (FGM) Approach. Flow, Turbulence and Combustion 92:4, pages 805-836.
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Rabijit Dutta, Anupam Dewan & Balaji Srinivasan. (2013) Comparison of various integration to wall (ITW) RANS models for predicting turbulent slot jet impingement heat transfer. International Journal of Heat and Mass Transfer 65, pages 750-764.
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C. Nuntadusit, M. Wae-hayee, A. Bunyajitradulya & S. Eiamsa-ard. (2012) Heat transfer enhancement by multiple swirling impinging jets with twisted-tape swirl generators. International Communications in Heat and Mass Transfer 39:1, pages 102-107.
Crossref
Adra Benhacine, Nabil Kharoua, Lyes Khezzar & Zoubir Nemouchi. (2011) Large eddy simulation of a slot jet impinging on a convex surface. Heat and Mass Transfer 48:1, pages 1-15.
Crossref
Marcelo J.S. de LemosMarcelo J. S. de Lemos. 2012. Turbulent Impinging Jets into Porous Materials. Turbulent Impinging Jets into Porous Materials 1 6 .

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