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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 36, 1999 - Issue 5
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Original Articles

SEMI-IMPLICIT FEM ANALYSIS OF NATURAL CONVECTION IN FREEZING WATER

Pages 449-472 | Published online: 29 Oct 2010

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Nelson O. Moraga & Marcelo A. Marambio. (2020) Three-dimensional natural heat convection and ternary alloy solidification problems by finite volume geometric multigrid method. Numerical Heat Transfer, Part A: Applications 77:6, pages 632-648.
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V. Mani Rathnam, Monisha Roy & Tanmay Basak. (2016) Analysis of entropy generation during natural convection in tilted triangular enclosures with various base angles. Numerical Heat Transfer, Part A: Applications 69:12, pages 1332-1354.
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Sundararaj Senthil Kumar & YanM. C. Delauré. (2014) Convective Heat Transfer of an Air Bubble in Water With Variable Thermophysical Properties. Heat Transfer Engineering 35:14-15, pages 1370-1379.
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W. Kowalczyk & A. Delgado. (2007) Numerical Simulation of Phase Change at High Hydrostatic Pressure under Variable-Gravity Environment. Numerical Heat Transfer, Part A: Applications 51:8, pages 735-751.
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NelsonO. Moraga & SylvanaA. Vega. (2004) UNSTEADY THREE-DIMENSIONAL NATURAL CONVECTION OF WATER COOLED INSIDE A CUBIC ENCLOSURE. Numerical Heat Transfer, Part A: Applications 45:8, pages 825-839.
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Articles from other publishers (38)

Sajad Khodadadi, Mohammad Hassan Taleghani, Davood Domiri Ganji & Mofid Gorji-Bandpy. (2023) Heat transfer enhancement via bubble dynamics along an inclined wall. International Communications in Heat and Mass Transfer 145, pages 106829.
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Elijah Gasmen, Jeffrey Marchetta & Firouzeh Sabri. (2023) Simulation and Optimization of Aerogel Packaging Solutions for Cold-Chain Biologistics. Journal of Packaging Technology and Research 7:1, pages 43-53.
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Mustafa Asker, Dincer Akal & Mehmet Akif Ezan. (2022) Performance assessment of a phase change charging mode in a vertical thermal energy storage system. International Journal of Energy Research 46:6, pages 7610-7625.
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Daniel Klembt, Heiko Meironke & Antonio Delgado. (2021) The heat and mass transfer of a fermenting multiphase flow using acoustic measurement technology and numerical methods. Applied Thermal Engineering 199, pages 117552.
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Hadi R. Al-Dayyeni, Wisam J. Khudhayer, Cihan Karatas, Mustafa Wahby Kanbar Jaber & Hasan T. Jalel. (2021) Experimental and theoretical analysis of heat transfer in a solar collector storage. Journal of Physics: Conference Series 1973:1, pages 012145.
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Edgardo J. Tabilo & Nelson O. Moraga. (2021) Improved water freezing with baffles attached to a freezing tunnel: Mathematical modeling and numerical simulation by a conjugate finite volume model. International Journal of Refrigeration 128, pages 177-185.
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Nihal Ahmed, Ashfaq Ahmed & Muntasir Mamun. 2021. Proceedings of International Joint Conference on Advances in Computational Intelligence. Proceedings of International Joint Conference on Advances in Computational Intelligence 105 116 .
Xianzhu Li & Pengzhan Huang. (2019) A sensitivity study of relaxation parameter in Uzawa algorithm for the steady natural convection model. International Journal of Numerical Methods for Heat & Fluid Flow 30:2, pages 818-833.
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Maher Al-Maghalseh & Khamid Mahkamov. (2018) Methods of heat transfer intensification in PCM thermal storage systems: Review paper. Renewable and Sustainable Energy Reviews 92, pages 62-94.
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Lei Wang, Jian Li & Pengzhan Huang. (2018) An efficient iterative algorithm for the natural convection equations based on finite element method. International Journal of Numerical Methods for Heat & Fluid Flow 28:3, pages 584-605.
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Yogesh JaluriaYogesh Jaluria. 2018. Advanced Materials Processing and Manufacturing. Advanced Materials Processing and Manufacturing 69 105 .
Sebastian Kuckuk, Gundolf Haase, Diego A. Vasco & Harald Köstler. (2017) Towards generating efficient flow solvers with the ExaStencils approach. Concurrency and Computation: Practice and Experience 29:17.
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Pengzhan Huang. (2017) An efficient two-level finite element algorithm for the natural convection equations. Applied Numerical Mathematics 118, pages 75-86.
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Prodyut R. Chakraborty. (2017) Enthalpy porosity model for melting and solidification of pure-substances with large difference in phase specific heats. International Communications in Heat and Mass Transfer 81, pages 183-189.
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Mehmet Akif Ezan & Mustafa Kalfa. (2016) Numerical investigation of transient natural convection heat transfer of freezing water in a square cavity. International Journal of Heat and Fluid Flow 61, pages 438-448.
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Pengzhan Huang, Xiaoling Ma & Rena Askar. (2015) A superconvergence result of the natural convection equations. Mathematical Methods in the Applied Sciences 39:12, pages 3496-3505.
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Y. Jaluria. 2016. 1 94 .
Pengzhan Huang, Wenqiang Li & Zhiyong Si. (2015) Several iterative schemes for the stationary natural convection equations at different Rayleigh numbers. Numerical Methods for Partial Differential Equations 31:3, pages 761-776.
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Binbin Du, Haiyan Su & Xinlong Feng. (2015) Two-level variational multiscale method based on the decoupling approach for the natural convection problem. International Communications in Heat and Mass Transfer 61, pages 128-139.
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T. S. Prasanna KumarB. Hernandez-MoralesG. E. Totten. (2015) “Reference QuenchProbe”—An Alternative Probe Design for In-Situ Estimation of Cooling Rates, Heat Flux, and Hardenability During Immersion Quenching of Hardenable Steels. Materials Performance and Characterization 3:4, pages 20140003.
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Diego A. Vasco, Carlos Zambra & Nelson O. Moraga. (2015) Numerical simulation of conjugate forced turbulent heat convection with induced natural laminar convection in a 2D inner cavity. International Journal of Thermal Sciences 87, pages 121-135.
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Xuan Wu, Bo Yu & Yi Wang. (2015) Wavelet Analysis on Turbulent Structure in Drag-Reducing Channel Flow Based on Direct Numerical Simulation. Advances in Mechanical Engineering 5, pages 514325.
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Nelson O. Moraga & Roberto A. Lemus-Mondaca. (2011) Numerical conjugate air mixed convection/non-Newtonian liquid solidification for various cavity configurations and rheological models. International Journal of Heat and Mass Transfer 54:23-24, pages 5116-5125.
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Nelson O. Moraga, Marcos A. Andrade & Diego A. Vasco. (2010) Unsteady conjugate mixed convection phase change of a power law non-Newtonian fluid in a square cavity. International Journal of Heat and Mass Transfer 53:15-16, pages 3308-3318.
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Yogesh Jaluria. (2010) Role of experiments in the accurate numerical simulation of thermal processes. International Journal of Numerical Methods for Heat & Fluid Flow 20:5, pages 467-491.
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Jung Bae Yoon, Jinho Lee & P. Kandaswamy. (2009) Transient thermo-solutal convection of water near 4°C with opposing gradients in a square cavity. International Journal of Heat and Mass Transfer 52:21-22, pages 4835-4850.
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Satoru Yamamoto & Takashi Furusawa. 2009. Computational Fluid Dynamics 2008. Computational Fluid Dynamics 2008 545 550 .
J.M. Khodadadi & S.F. Hosseinizadeh. (2007) Nanoparticle-enhanced phase change materials (NEPCM) with great potential for improved thermal energy storage. International Communications in Heat and Mass Transfer 34:5, pages 534-543.
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Tomasz Kowalewski, Phillip Ligrani, Andreas Dreizler, Christof Schulz & Uwe Fey. 2007. Springer Handbook of Experimental Fluid Mechanics. Springer Handbook of Experimental Fluid Mechanics 487 561 .
K.A. Abbas, M.M.H.M. Ahmad, S.M. Sapuan, M.A. Wan, B. Jamilah & I. Dincer. (2006) Numerical analysis of heat transfer in cooling of fish packages. International Communications in Heat and Mass Transfer 33:7, pages 889-897.
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S. Arunkumar & T.S. Prasanna Kumar. (2006) Numerical Study of Freezing of Water Using Taylor-Galerkin based Non-Linear Temperature Recovery Method. Numerical Study of Freezing of Water Using Taylor-Galerkin based Non-Linear Temperature Recovery Method.
Abdel Illah Nabil Korti & Yahia Khadraoui. (2004) A numerical simulation of the DC continuous casting using average heat capacity. Scandinavian Journal of Metallurgy 33:6, pages 347-354.
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W. Kowalczyk, Chr. Hartmann & A. Delgado. (2004) Modelling and numerical simulation of convection driven high pressure induced phase changes. International Journal of Heat and Mass Transfer 47:5, pages 1079-1089.
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Tomasz A. Kowalewski. 2004. Phase Change with Convection: Modelling and Validation. Phase Change with Convection: Modelling and Validation 171 218 .
Piotr Furmański. 2004. Phase Change with Convection: Modelling and Validation. Phase Change with Convection: Modelling and Validation 55 126 .
Yogesh Jaluria. (2003) Thermal Processing of Materials: From Basic Research to Engineering. Journal of Heat Transfer 125:6, pages 957-979.
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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. (2001) Heat transfer – a review of 1999 literature. International Journal of Heat and Mass Transfer 44:19, pages 3579-3699.
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Yogesh Jaluria. (2001) Fluid Flow Phenomena in Materials Processing—The 2000 Freeman Scholar Lecture. Journal of Fluids Engineering 123:2, pages 173-210.
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