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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 54, 2008 - Issue 11
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Original Articles

Thermal Analysis of an Impinging Jet on a Plate With and Without a Porous Layer

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Pages 1022-1041 | Received 20 Jun 2008, Accepted 18 Aug 2008, Published online: 29 Oct 2008

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

Read on this site (15)

Recep Ekiciler, Muhammet Samet Ali Çetinkaya & Kamil Arslan. (2020) Effect of shape of nanoparticle on heat transfer and entropy generation of nanofluid-jet impingement cooling. International Journal of Green Energy 17:10, pages 555-567.
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Sampath Kumar Chinige, Nikhilesh Ghanta & Arvind Pattamatta. (2018) Multiobjective optimization study of jet impingement heat transfer through a porous passage configuration. Numerical Heat Transfer, Part A: Applications 73:7, pages 446-465.
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Iman Zahmatkesh & Seyyed Ali Naghedifar. (2017) Oscillatory mixed convection in the jet impingement cooling of a horizontal surface immersed in a nanofluid-saturated porous medium. Numerical Heat Transfer, Part A: Applications 72:5, pages 401-416.
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PauloH. S. Carvalho & MarceloJ. S. de Lemos. (2014) Passive Laminar Heat Transfer Across Porous Cavities Using the Thermal Non-Equilibrium Model. Numerical Heat Transfer, Part A: Applications 66:11, pages 1173-1194.
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Tzer-Ming Jeng, Sheng-Chung Tzeng & Xin-Ya Huang. (2012) Numerical Study of Impinging Cooling of a Porous Block Under a Straightening or Non-Straightening Jet Flow. Numerical Heat Transfer, Part A: Applications 61:7, pages 502-526.
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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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H.J. Zhang & Z.P. Zou. (2012) Investigation of a Confined Laminar Impinging Jet on a Plate with a Porous Layer Using the Preconditioned Density-Based Algorithm. Numerical Heat Transfer, Part A: Applications 61:4, pages 241-267.
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S.Z. Shuja & B.S. Yilbas. (2012) Jet Emerging from a Nozzle and Impinging on a Conical Cavity: Influence of Nozzle and Cavity Geometric Configurations. Numerical Heat Transfer, Part A: Applications 61:2, pages 142-162.
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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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Cleges Fischer & MarceloJ. S. de Lemos. (2010) A Turbulent Impinging Jet on a Plate Covered with a Porous Layer. Numerical Heat Transfer, Part A: Applications 58:6, pages 429-456.
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Kok-Cheong Wong & NawafH. Saeid. (2009) Unsteady Mixed Convection of a Confined Jet in a Fluid-Superposed High Porosity Medium. Numerical Heat Transfer, Part A: Applications 56:10, pages 827-845.
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Kok-Cheong Wong, NawafH. Saeid & Ching Seong Tan. (2009) Visualization of Mixed Convective Rolls of a Slot Jet in a Fluid-Superposed Metallic Porous Foam Heated from below. Numerical Heat Transfer, Part A: Applications 56:1, pages 20-41.
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Kok-Cheong Wong & NawafH. Saeid. (2009) Jet Impingement Cooling of a Finite Thickness Solid Layer Conjugated with Porous Medium. Numerical Heat Transfer, Part A: Applications 55:7, pages 706-720.
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Articles from other publishers (34)

Bugra Sarper. (2024) Influence of Buoyancy and Inter-Surface Radiation on Confined Jet Impingement Cooling of a Semi-Cylindrical Concave Plate. ASME Journal of Heat and Mass Transfer 146:3.
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S. Suyambazhahan, S. Sathyanarayanan, S. P. Asok & K. V. Narayanan. (2023) CFD analysis of the effects of flow and thermal oscillations in heat transfer of impinging jet. Heat Transfer 53:1, pages 177-198.
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Abdul Rahman Ansari & Vipul M. Patel. 2023. Recent Advances in Fluid Dynamics. Recent Advances in Fluid Dynamics 271 283 .
Amirhossein Karami, Farshad Kowsary, Pedram Hanafizadeh & Alireza Mahdavi Nejad. (2022) Enhancement of convective drying of a moist porous material with impinging slot jet by implementation of micro-encapsulated phase change material: A numerical feasibility study. International Journal of Heat and Mass Transfer 191, pages 122828.
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Ahmet Numan ÖZAKIN & Abdüssamed KABAKUŞ. (2022) Numerical analysis of the effect of single and cascade air jets on heat and flow characteristics in plane surface heat sinks. Gümüşhane Üniversitesi Fen Bilimleri Enstitüsü Dergisi.
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Oktay Çiçek & A. Cihat Baytaş. (2021) Nanofluid jet impingement heating of a cooled surface with a constant heat flux in the presence of porous layer. International Journal of Numerical Methods for Heat & Fluid Flow 32:2, pages 825-849.
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Hüseyin KAYA. (2021) İkili Çarpan Jet ile Soğutulan Sıcak Plakanın Yüzey Şeklinin Isı Transferine Etkisinin Sayısal AnaliziNumerical Analysis of the Effect of Surface Shape of Hot Plate Cooled by Double Impinging Jet on Heat Transfer. Düzce Üniversitesi Bilim ve Teknoloji Dergisi 9:1, pages 152-163.
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Yunpeng Wang & Roger E. Khayat. (2021) The planar spread of a liquid jet and hydraulic jump on a porous layer. Physics of Fluids 33:1.
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Shafqat Hussain, Muneer A. Ismael & Ali J. Chamkha. (2020) Impinging jet into an open trapezoidal cavity partially filled with a porous layer. International Communications in Heat and Mass Transfer 118, pages 104870.
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Mohammadreza Sedighi, Ricardo Vasquez Padilla, Robert A. Taylor, Maree Lake, Iman Izadgoshasb & Andrew Rose. (2019) High-temperature, point-focus, pressurised gas-phase solar receivers: A comprehensive review. Energy Conversion and Management 185, pages 678-717.
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Recep Ekiciler, Muhammet Samet Ali Çetinkaya & Kamil Arslan. (2019) Convective Heat Transfer Investigation of a Confined Air Slot-Jet Impingement Cooling on Corrugated Surfaces With Different Wave Shapes. Journal of Heat Transfer 141:2.
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Bernardo Buonomo, Oronzio Manca, Sergio Nappo & Sergio Nardini. (2018) Numerical investigation on laminar slot-jet impinging on a surface at uniform heat flux in a channel partially filled with a porous medium. Energy Procedia 148, pages 790-797.
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Chinige Sampath Kumar & Arvind Pattamatta. (2018) Assessment of Heat Transfer Enhancement Using Metallic Porous Foam Configurations in Laminar Slot Jet Impingement: An Experimental Study. Journal of Heat Transfer 140:2.
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Chinige Sampath Kumar, Satheshkumar Mohankumar, Martin Geier & Arvind Pattamatta. (2017) Numerical investigations on convective heat transfer enhancement in jet impingement due to the presence of porous media using Cascaded Lattice Boltzmann method. International Journal of Thermal Sciences 122, pages 201-217.
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Hsiang-Chu Sung & Yao-Hsien Liu. (2017) Heat transfer in rectangular channels with porous wire mesh under impinging jet conditions. International Journal of Thermal Sciences 122, pages 92-101.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2017. Convection in Porous Media. Convection in Porous Media 1 35 .
H.Y. Zhang, C. Li & P.Q. Fan. (2016) Thermal and flow characteristics of device integrated metallic foam heat sinks with central impingement flow. Thermal and flow characteristics of device integrated metallic foam heat sinks with central impingement flow.
J. J. Kuang, X. L. Wang, T. J. Lu & T. Kim. (2016) Role of Laminar Length of Round Jet Impinging on Metal Foams. Journal of Thermophysics and Heat Transfer 30:1, pages 103-110.
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Peipei Yang, Zhi Wen, Ruifeng Dou & Yuqin Chen. (2015) Double MRT-lattice Boltzmann model for simulating impinging jet flow and heat transfer. International Journal of Heat and Mass Transfer 86, pages 302-308.
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Prasanth Anand Kumar Lam & K. Arul Prakash. (2015) A numerical investigation of heat transfer and entropy generation during jet impingement cooling of protruding heat sources without and with porous medium. Energy Conversion and Management 89, pages 626-643.
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Omar A. Melhem, Bekir S. Yilbas & S.Z. Shuja. (2014) Jet impingement onto kerf: Effect of kerf wedge angle on heat transfer rates and skin friction. Optics & Laser Technology 56, pages 76-87.
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Paulo H.S. Carvalho & Marcelo J.S. de Lemos. (2013) Turbulent free convection in a porous square cavity using the thermal equilibirum model. International Communications in Heat and Mass Transfer 49, pages 10-16.
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Ana C. Pivem & Marcelo J.S. de Lemos. (2013) Turbulence modeling in a parallel flow moving porous bed. International Communications in Heat and Mass Transfer 48, pages 1-7.
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Zenghui Zhao, Yoav Peles & Michael K. Jensen. (2013) Water jet impingement boiling from structured-porous surfaces. International Journal of Heat and Mass Transfer 63, pages 445-453.
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Dae Hee Lee, Jong Ryeol Bae, Mira Ryu & Phil Ligrani. (2012) Confined, Milliscale Unsteady Laminar Impinging Slot Jets: Effects of Slot Width on Surface Stagnation Point Nusselt Numbers. Journal of Electronic Packaging 134:4.
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C. Nuntadusit, M. Wae-hayee, P. Tekasakul & S. Eiamsa-ard. (2012) Local heat transfer characteristics of array impinging jets from elongated orifices. International Communications in Heat and Mass Transfer 39:8, pages 1154-1164.
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Kok-Cheong Wong. (2012) Thermal analysis of a metal foam subject to jet impingement. International Communications in Heat and Mass Transfer 39:7, pages 960-965.
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Marcelo J.S. de LemosMarcelo J. S. de Lemos. 2012. Turbulent Impinging Jets into Porous Materials. Turbulent Impinging Jets into Porous Materials 75 76 .
Marcelo J.S. de LemosMarcelo J. S. de Lemos. 2012. Turbulent Impinging Jets into Porous Materials. Turbulent Impinging Jets into Porous Materials 37 53 .
Marcelo J.S. de LemosMarcelo J. S. de Lemos. 2012. Turbulent Impinging Jets into Porous Materials. Turbulent Impinging Jets into Porous Materials 7 19 .
Marcelo J.S. de LemosMarcelo J. S. de Lemos. 2012. Turbulent Impinging Jets into Porous Materials. Turbulent Impinging Jets into Porous Materials 1 6 .
Dae Hee Lee, Jong Ryeol Bae, Hyun Jin Park, Jun Sik Lee & Phil Ligrani. (2011) Confined, milliscale unsteady laminar impinging slot jets and surface Nusselt numbers. International Journal of Heat and Mass Transfer 54:11-12, pages 2408-2418.
Crossref
Felipe T. Dórea & Marcelo J.S. de Lemos. (2010) Simulation of laminar impinging jet on a porous medium with a thermal non-equilibrium model. International Journal of Heat and Mass Transfer 53:23-24, pages 5089-5101.
Crossref
Pey Shey Wu, Chia Yu Hsieh & Shen Ta Tsai. (2010) Heat Transfer Enhancement of Jet Impingement on a Flat Plate Attached by a Porous Medium with a Center Cavity. Defect and Diffusion Forum 297-301, pages 427-432.
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