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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 30, 1996 - Issue 3
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Original Articles

EFFECT OF PRANDTL NUMBER AND COMPUTATIONAL SCHEMES ON THE OSCILLATORY NATURAL CONVECTION IN AN ENCLOSURE

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Pages 271-282 | Received 11 Dec 1995, Accepted 23 Feb 1996, Published online: 03 Apr 2007

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Read on this site (9)

Semiha Öztuna. (2007) A Differential Quadrature Solution of Natural Convection in an Enclosure with a Partial Partition. Numerical Heat Transfer, Part A: Applications 52:11, pages 1009-1026.
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Kamil Kahveci. (2007) A Differential Quadrature Solution of Natural Convection in an Enclosure with a Finite-Thickness Partition. Numerical Heat Transfer, Part A: Applications 51:10, pages 979-1002.
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JalalM. Jalil & KaysA. Al-Tae'y. (2007) The Effect of Nonuniform Magnetic Field on Natural Convection in an Enclosure. Numerical Heat Transfer, Part A: Applications 51:9, pages 899-917.
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NawafH. Saeid & Yusli Yaacob. (2006) Natural Convection in a Square Cavity with Spatial Side-Wall Temperature Variation. Numerical Heat Transfer, Part A: Applications 49:7, pages 683-697.
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Masato Akamatsu, Mitsuo Higano, Yoshio Takahashi & Hiroyuki Ozoe. (2005) HEAT TRANSFER CONTROL IN QUIESCENT AIR WITH THERMAL GRADIENT BY MAGNETIZING FORCE UNDER BOTH GRAVITATIONAL AND NONGRAVITATIONAL FIELDS. Numerical Heat Transfer, Part A: Applications 47:4, pages 375-392.
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Tomasz Bednarz, Toshio Tagawa, Masayuki Kaneda, Hiroyuki Ozoe & JanuszS. Szmyd. (2004) MAGNETIC AND GRAVITATIONAL CONVECTION OF AIR WITH A COIL INCLINED AROUND THE X AXIS. Numerical Heat Transfer, Part A: Applications 46:1, pages 99-113.
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Masato Akamatsu, Mitsuo Higano, Yoshio Takahashi & Hiroyuki Ozoe. (2003) Numerical computation on the control of aerial flow by the magnetizing force in gravitational and nongravitational fields. Numerical Heat Transfer, Part A: Applications 43:1, pages 9-29.
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Masato Akamatsu, Mitsuo Higano & Hiroyuki Ozoe. (2002) CONVECTIONAL MODE AND ELECTRICAL FIELD IN SILICON MELTS UNDER VERTICAL, HORIZONTAL, AND ROTATING MAGNETIC FIELDS. Numerical Heat Transfer, Part A: Applications 42:1-2, pages 33-54.
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Toshio Tagawa, Hiroyuki Ozoe, Kensuke Sassa & Shigeo Asai. (2002) CONVECTIVE AND DIFFUSIVE PHENOMENA OF AIR IN A VERTICAL CYLINDER UNDER A STRONG MAGNETIC FIELD. Numerical Heat Transfer, Part B: Fundamentals 41:3-4, pages 383-395.
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Articles from other publishers (36)

Leelasagar Koneti & Venkatasubbaiah K. (2023) A comparative heat transfer study of water and liquid gallium in a square enclosure under natural convection. International Journal of Fluid Mechanics Research.
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Takuya Masuda, Toshio Tagawa, M. M. A. Alam & Yasutaka Hayamizu. (2023) Transition of natural convection of liquid metal in an annular enclosure under a magnetic field. Physics of Fluids 35:1.
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Takuya Masuda & Toshio Tagawa. (2022) Transition of natural convection of liquid metal in an annular enclosure. Physics of Fluids 34:2.
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Toshio Tagawa & Kewei Song. (2021) Spin-Up from Rest of a Liquid Metal with Deformable Free Surface in a Cylinder under the Influence of a Uniform Axial Magnetic Field. Fluids 6:12, pages 438.
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Takuya Masuda & Toshio Tagawa. (2020) Axisymmetric Natural Convection of Liquid Metal in an Annular Enclosure under the Influence of Azimuthal Magnetic Field. Energies 13:11, pages 2896.
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Yutaro Furuichi & Toshio Tagawa. (2020) Numerical Study of the Magnetic Damping Effect on the Sloshing of Liquid Oxygen in a Propellant Tank. Fluids 5:2, pages 88.
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Narendra Laxman Gajbhiye, Praveen Throvagunta & Vinayak Eswaran. (2018) Validation and verification of a robust 3-D MHD code. Fusion Engineering and Design 128, pages 7-22.
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Jian Wu, Pédro A. Vázquez, Philippe Traoré & Alberto T. Pérez. (2014) Finite amplitude electroconvection induced by strong unipolar injection between two coaxial cylinders. Physics of Fluids 26:12.
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Jian Wu, Philippe Traore, Christophe Louste, Lucian Dascalescu, Fang-Bao Tian & Alberto T. Perez. (2014) Effect of the Mobility Parameter on the Oscillatory Electroconvection of Dielectric Liquids Subject to Strong Unipolar Charge Injection. IEEE Transactions on Industry Applications 50:4, pages 2306-2313.
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Jian Wu, Philippe Traore, Christophe Louste, Lucian Dascalescu, Fang-Bao Tian & Alberto Perez. (2013) Effect of the mobility parameter on the oscillatory electro-convection of dielectric liquids subject to strong unipolar charge injection. Effect of the mobility parameter on the oscillatory electro-convection of dielectric liquids subject to strong unipolar charge injection.
Xu Xu, Zi-Tao Yu, Ya-Cai Hu, Li-Wu Fan & Ke-Fa Cen. (2012) Transient natural convective heat transfer of a low-Prandtl-number fluid from a heated horizontal circular cylinder to its coaxial triangular enclosure. International Journal of Heat and Mass Transfer 55:4, pages 995-1003.
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L. Domanski, T. Bednarz, T. E. Gureyev, L. Murray, E. Huang & J. A. Taylor. (2011) Applications of Heterogeneous Computing in Computational and Simulation Science. Applications of Heterogeneous Computing in Computational and Simulation Science.
Zi-Tao Yu, Xu Xu, Ya-Cai Hu, Li-Wu Fan & Ke-Fa Cen. (2010) Transient natural convective heat transfer of a low-Prandtl-number fluid inside a horizontal circular cylinder with an inner coaxial triangular cylinder. International Journal of Heat and Mass Transfer 53:23-24, pages 5102-5110.
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Yosuke Shibasaki, Kazuyuki Ueno & Toshio Tagawa. (2010) Computation of a Rising Bubble in an Enclosure Filled with Liquid Metal under Vertical Magnetic Fields. ISIJ International 50:3, pages 363-370.
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Tomasz P. Bednarz, Wenxian Lin, John C. Patterson, Chengwang Lei & Steven W. Armfield. (2009) Scaling for unsteady thermo-magnetic convection boundary layer of paramagnetic fluids of Pr>1 in micro-gravity conditions. International Journal of Heat and Fluid Flow 30:6, pages 1157-1170.
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Tomasz Bednarz, Elzbieta Fornalik, Hiroyuki Ozoe, Janusz S. Szmyd, John C. Patterson & Chengwang Lei. (2008) Influence of a horizontal magnetic field on the natural convection of paramagnetic fluid in a cube heated and cooled from two vertical side walls. International Journal of Thermal Sciences 47:6, pages 668-679.
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A. Ogulu & E. Amos. (2007) Modeling pulsatile blood flow within a homogeneous porous bed in the presence of a uniform magnetic field and time-dependent suction. International Communications in Heat and Mass Transfer 34:8, pages 989-995.
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J. Prakash & A. Ogulu. (2007) A study of pulsatile blood flow modeled as a power law fluid in a constricted tube. International Communications in Heat and Mass Transfer 34:6, pages 762-768.
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Toshio Tagawa. (2007) Numerical Simulation of Liquid Metal Free-surface Flows in the Presence of a Uniform Static Magnetic Field. ISIJ International 47:4, pages 574-581.
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T. Tagawa. (2006) Numerical simulation of two-phase flows in the presence of a magnetic field. Mathematics and Computers in Simulation 72:2-6, pages 212-219.
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Orhan Aydin & Ahmet Ünal. (2006) Transient buoyant convection in a 45°‐inclined enclosure heated and cooled on adjacent walls. International Journal of Numerical Methods for Heat & Fluid Flow 16:4, pages 451-469.
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Masayuki Kaneda, Toshio Tagawa & Hiroyuki Ozoe. (2006) Natural convection of liquid metal under a uniform magnetic field with an electric current supplied from outside. Experimental Thermal and Fluid Science 30:3, pages 243-252.
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Jian Ma, Peng Guo, Jinsuo Zhang, Ning Li & Bingmei M. Fu. (2005) Enhancement of oxygen transfer in liquid lead and lead–bismuth eutectic by natural convection. International Journal of Heat and Mass Transfer 48:13, pages 2601-2612.
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Toshio TAGAWA. (2005) Numerical Simulation of a Falling Droplet of Liquid Metal into a Liquid Layer in the Presence of a Uniform Vertical Magnetic Field. ISIJ International 45:7, pages 954-961.
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T Tagawa & M Kaneda. (2005) Numerical analyses of a Couette-Taylor flow in the presence of a magnetic field. Journal of Physics: Conference Series 14, pages 48-54.
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M. Akamatsu, M. Higano, Y. Takahashi & H. Ozoe. (2004) Numerical Prediction on Heat Transfer Phenomenon in Paramagnetic and Diamagnetic Fluids Under a Vertical Magnetic Field Gradient. IEEE Transactions on Appiled Superconductivity 14:2, pages 1674-1681.
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H. Hirano, H. Ozoe & N. Okamoto. (2003) Experimental study of natural convection heat transfer of air in a cube below atmospheric pressure. International Journal of Heat and Mass Transfer 46:23, pages 4483-4488.
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Toshio Tagawa, Azusa Ujihara & Hiroyuki Ozoe. (2003) Numerical computation for Rayleigh–Benard convection of water in a magnetic field. International Journal of Heat and Mass Transfer 46:21, pages 4097-4104.
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Guillaume Authié, Toshio Tagawa & René Moreau. (2003) Buoyant flow in long vertical enclosures in the presence of a strong horizontal magnetic field. Part 2. Finite enclosures. European Journal of Mechanics - B/Fluids 22:3, pages 203-220.
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Shunichi Wakitani. (2001) Numerical Study of Three-Dimensional Oscillatory Natural Convection at Low Prandtl Number in Rectangular Enclosures. Journal of Heat Transfer 123:1, pages 77-83.
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E.R.G. Eckert, R.J. Goldstein, W.E. Ibele, 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. Kulacki & U. Kortshagen. (2000) Heat transfer — a review of 1996 literature. International Journal of Heat and Mass Transfer 43:8, pages 1273-1371.
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Hiroyuki Ozoe. (1999) Melt stirring effect of a weak magnetic field on crystal growth. Progress in Crystal Growth and Characterization of Materials 38:1-4, pages 239-259.
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Akihiro Nakano, Hiroyuki Ozoe & S.W Churchill. (1998) Numerical computation of natural convection for a low-Prandtl-number fluid in a shallow rectangular region heated from below. Chemical Engineering Journal 71:3, pages 175-182.
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Yasunori Okano, Nicholas Audet, Sadik Dost, Yasuhiro Hayakawa & Masashi Kumagawa. (1998) Numerical simulation of oscillatory flow in melt during InSb single crystal growth by RF heating Czochralski method. International Journal of Numerical Modelling: Electronic Networks, Devices and Fields 11:6, pages 289-298.
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Toshio Tagawa & Hiroyuki Ozoe. (1998) The natural convection of liquid metal in a cubical enclosure with various electro-conductivities of the wall under the magnetic field. International Journal of Heat and Mass Transfer 41:13, pages 1917-1928.
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T. Tagawa & H. Ozoe. (1997) Enhancement of Heat Transfer Rate by Application of a Static Magnetic Field During Natural Convection of Liquid Metal in a Cube. Journal of Heat Transfer 119:2, pages 265-271.
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