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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 59, 2011 - Issue 10
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Original Articles

Simulation of a Turbulent Impinging Jet into a Layer of Porous Material Using a Two–Energy Equation Model

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Pages 769-798 | Received 06 Jan 2011, Accepted 24 Feb 2011, Published online: 31 May 2011

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Read on this site (5)

Amitesh Kumar. (2015) Mean Flow and Thermal Characteristics of a Turbulent Dual Jet Consisting of a Plane Wall Jet and a Parallel Offset Jet. Numerical Heat Transfer, Part A: Applications 67:10, pages 1075-1096.
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Tien-Mo Shih, Yingbin Zheng, Martinus Arie & Jin-Cheng Zheng. (2013) Literature Survey of Numerical Heat Transfer (2010–2011). Numerical Heat Transfer, Part A: Applications 64:6, pages 435-525.
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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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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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Articles from other publishers (13)

Tawfiq Chekifi & Moustafa Boukraa. (2023) CFD applications for sensible heat storage: A comprehensive review of numerical studies. Journal of Energy Storage 68, pages 107893.
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Fernando A. Rodrigues & Marcelo J.S. de Lemos. (2021) Turbulent flow and heat transfer in a partially filled ventilated cavity using the local thermal non-equilibrium method. International Journal of Thermal Sciences 164, pages 106844.
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Seyed Mostafa Hosseinalipour, Soroush Rashidzadeh, Mahdi Moghimi & Kazem Esmailpour. (2020) Numerical study of laminar pulsed impinging jet on the metallic foam blocks using the local thermal non-equilibrium model. Journal of Thermal Analysis and Calorimetry 141:5, pages 1859-1874.
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Fernando A. Rodrigues & Marcelo J.S. de Lemos. (2020) Effect of porous material properties on thermal efficiencies of a thermocline storage tank. Applied Thermal Engineering 173, pages 115194.
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Fernando A. Rodrigues & Marcelo J.S. de Lemos. (2020) Transient performance of a thermocline energy storage system using the two-energy equation model. International Journal of Heat and Mass Transfer 150, pages 119323.
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Marcelo J. S. de Lemos & Paulo H. S. Carvalho. (2019) Modified Lewis Number and Buoyancy Ratio Effects on Turbulent Double-Diffusive Convection in Porous Media Using the Thermal Nonequilibrium Model. Journal of Heat Transfer 141:1.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2017. Convection in Porous Media. Convection in Porous Media 1 35 .
Mauro Scungio, Giorgio Buonanno, Luca Stabile & Giorgio Ficco. (2016) Lung cancer risk assessment at receptor site of a waste-to-energy plant. Waste Management 56, pages 207-215.
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Mauro Scungio, Giorgio Buonanno, Fausto Arpino & Giorgio Ficco. (2015) Influential parameters on ultrafine particle concentration downwind at waste-to-energy plants. Waste Management 38, pages 157-163.
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Yue-Tzu Yang, Shih-Chia Lin, Yi-Hsien Wang & Jen-Chi Hsu. (2013) Numerical simulation and optimization of impingement cooling for rotating and stationary pin–fin heat sinks. International Journal of Heat and Fluid Flow 44, pages 383-393.
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Marcelo J.S. de Lemos & Ana C. Pivem. (2012) Turbulent flow with combustion in a moving bed. International Communications in Heat and Mass Transfer 39:1, pages 1-7.
Crossref
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 1 6 .

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