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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 45, 2004 - Issue 3
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Original Articles

THREE-DIMENSIONAL NUMERICAL INVESTIGATION OF FLOW AND HEAT TRANSFER CHARACTERISTICS OF INLINE JET ARRAYS

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Pages 271-288 | Received 01 Jan 2003, Accepted 01 Jun 2003, Published online: 17 Aug 2010

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Read on this site (4)

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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Neil Zuckerman & Noam Lior. (2008) The Relationship Between the Distributions of Slot-Jet-Impingement Convective Heat Transfer and the Temperature in the Cooled Solid Cylinder. Numerical Heat Transfer, Part A: Applications 53:12, pages 1271-1293.
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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 (11)

Sharad Pachpute & B. Premachandran. (2020) Turbulent multi-jet impingement cooling of a heated circular cylinder. International Journal of Thermal Sciences 148, pages 106167.
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Mustafa Kilic, Tamer Calisir & Senol Baskaya. (2016) Experimental and numerical study of heat transfer from a heated flat plate in a rectangular channel with an impinging air jet. Journal of the Brazilian Society of Mechanical Sciences and Engineering 39:1, pages 329-344.
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S. Ravishankar & K. Arul Prakash. (2015) Enhanced Cooling of Electronic Components Using Fluid Flow Under High Adverse Pressure Gradient. Journal of Thermal Science and Engineering Applications 7:3.
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Huancheng QuTianyuan LiuHuiyong ChenYonghui Xie. (2015) Numerical investigation of laminar jet arrays impinging onto dimpled target surface. Canadian Journal of Physics 93:6, pages 663-670.
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M.A. Al-Rmah & A.A. Mohamad. (2015) Simulation of multi-internal confined impinging jets using the lattice Boltzmann method. Applied Thermal Engineering 81, pages 288-296.
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Chuanjie Zhang, Guoqiang Xu, Haiwang Li, Jining Sun & Na Cai. (2014) The Effect of Weak Crossflow on the Heat Transfer Characteristics of Short-Distance Impinging Cooling. Journal of Heat Transfer 136:11.
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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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S. A. Nada. (2009) Buoyancy and cross flow effects on heat transfer of multiple impinging slot air jets cooling a flat plate at different orientations. Heat and Mass Transfer 45:8, pages 1083-1097.
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L. B. Y. Aldabbagh & A. A. Mohamad. (2006) Effect of jet-to-plate spacing in laminar array jets impinging. Heat and Mass Transfer 43:3, pages 265-273.
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Xianchang Li, J. Leo Gaddis & Ting Wang. (2005) Multiple flow patterns and heat transfer in confined jet impingement. International Journal of Heat and Fluid Flow 26:5, pages 746-754.
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Subrata Roy, Haribalan Kumar & Richard Anderson. (2005) Efficient defrosting of an inclined flat surface. International Journal of Heat and Mass Transfer 48:13, pages 2613-2624.
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