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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 38, 2000 - Issue 1
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Original Articles

NUMERICAL MODELING OF CONJUGATE HEAT TRANSFER DURING IMPINGEMENT OF FREE LIQUID JET ISSUING FROM A SLOT NOZZLE

Pages 45-66 | Published online: 29 Oct 2010

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Read on this site (7)

MuhammadM. Rahman, CesarF. Hernandez & JorgeC. Lallave. (2010) Free Liquid Jet Impingement from a Slot Nozzle to a Curved Plate. Numerical Heat Transfer, Part A: Applications 57:11, pages 799-821.
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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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MuhammadM. Rahman & JorgeC. Lallave. (2009) Transient Conjugate Heat Transfer During Free Liquid Jet Impingement on a Rotating Solid Disk. Numerical Heat Transfer, Part A: Applications 55:3, pages 229-251.
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MuhammadM. Rahman, JorgeC. Lallave & CesarF. Hernandez. (2008) Convective Heat Transfer from a Thick Hemispherical Plate during Free Liquid Jet Impingement. Numerical Heat Transfer, Part A: Applications 54:6, pages 581-602.
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S. Kondaraju & J. S. Lee. (2007) Hybrid Turbulence Modeling of Liquid Spray Impingement on a Heated Wall with Arbitrary Lagrangian Eulerian Method. Numerical Heat Transfer, Part A: Applications 52:12, pages 1059-1079.
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MuhammadM. Rahman & JorgeC. Lallave. (2007) A Comprehensive Study of Conjugate Heat Transfer During Free Liquid Jet Impingement on a Rotating Disk. Numerical Heat Transfer, Part A: Applications 51:11, pages 1041-1064.
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S. Z. Shuja, B. S. Yilbas & M. O. Budair. (2005) Influence of Conical and Annular Nozzle Geometric Configurations on Flow and Heat Transfer Characteristics due to Flow Impingement onto a Flat Plate. Numerical Heat Transfer, Part A: Applications 48:9, pages 917-939.
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Articles from other publishers (18)

Vishwa Mohan Behera & Sushil Kumar Rathore. (2023) Effect of Offset Ratio and Plate Motion on Conjugate Heat Transfer in a Turbulent Offset Jet Flow Over the Heated Plate. ASME Journal of Heat and Mass Transfer 145:7.
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Vishwa Mohan Behera & Sushil Kumar Rathore. (2022) The effect of plate motion on heat transfer enhancement using turbulent offset jet flow: A conjugate approach. International Communications in Heat and Mass Transfer 136, pages 106173.
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Sushil Kumar Rathore, Sanjay Singh Rathore & Sudarshan Singh. (2019) Computational investigation of slot jet impinging on a heated flat plate using low-Reynolds number modeling. Journal of Physics: Conference Series 1240:1, pages 012126.
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Shikun Zhang, Zhongwei Huang, Gensheng Li, Xiaoguang Wu, Chi Peng & Wenping Zhang. (2018) Numerical analysis of transient conjugate heat transfer and thermal stress distribution in geothermal drilling with high-pressure liquid nitrogen jet. Applied Thermal Engineering 129, pages 1348-1357.
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John M. Gorman, Ephraim M. Sparrow, Abhimanyu Ghosh & John P. Abraham. 2018. 1 41 .
Weihong Li, Li Yang, Xueying Li, Jing RenHongde Jiang. (2017) Effect of Reynolds Number, Hole Patterns, and Target Plate Thickness on the Cooling Performance of an Impinging Jet Array—Part II: Conjugate Heat Transfer Results and Optimization. Journal of Turbomachinery 139:10.
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Argemiro Palencia-Diaz, Cesar Barraza-Botet & Antonio José Bula-Silvera. (2017) Experimental study of flat plate cooling using draft induced by a submerged radial jet. Revista Facultad de Ingeniería Universidad de Antioquia:83, pages 57-64.
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A. Madhusudana Achari & Manab Kumar Das. (2016) Conjugate heat transfer study of a turbulent slot jet impinging on a moving plate. Heat and Mass Transfer 53:3, pages 1017-1035.
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Xiao Wei Zhu, Lei Zhu & Jing Quan Zhao. (2017) An in-depth analysis of conjugate heat transfer process of impingement jet. International Journal of Heat and Mass Transfer 104, pages 1259-1267.
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Xiao Wei Zhu, Lei Zhu & Jing Quan Zhao. (2016) Three-dimensional simulation of impingement jet flow and heat transfer with various working fluids. Three-dimensional simulation of impingement jet flow and heat transfer with various working fluids.
Mark M. Dobbertean & Muhammad Mustafizur Rahman. (2016) Numerical analysis of steady state heat transfer for jet impingement on patterned surfaces. Applied Thermal Engineering 103, pages 481-490.
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Yue-Tzu Yang, Yi-Hsien Wang & Jen-Chi Hsu. (2015) Numerical thermal analysis and optimization of a water jet impingement cooling with VOF two-phase approach. International Communications in Heat and Mass Transfer 68, pages 162-171.
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Jaewon Lee, Gihun Son & Han Young Yoon. (2015) Numerical simulation of the quenching process in liquid jet impingement. International Communications in Heat and Mass Transfer 61, pages 146-152.
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Yue-Tzu Yang, Tzu-Chieh Wei & Yi-Hsien Wang. (2011) Numerical study of turbulent slot jet impingement cooling on a semi-circular concave surface. International Journal of Heat and Mass Transfer 54:1-3, pages 482-489.
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S. Kondaraju & J. S. Lee. (2008) Hybrid turbulence simulation of spray impingement cooling: The effect of vortex motion on turbulent heat flux. International Journal for Numerical Methods in Fluids 59:6, pages 657-676.
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Tzer-Ming Jeng, Sheng-Chung Tzeng & Tung-Chun Liu. (2008) Heat transfer behavior in a rotating aluminum foam heat sink with a circular impinging jet. International Journal of Heat and Mass Transfer 51:5-6, pages 1205-1215.
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Yue-Tzu Yang & Shiang-Yi Tsai. (2007) Numerical study of transient conjugate heat transfer of a turbulent impinging jet. International Journal of Heat and Mass Transfer 50:5-6, pages 799-807.
Crossref
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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