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Utilization of Maxwell-Cattaneo law for MHD swirling flow through oscillatory disk subject to porous medium 被引量:3

Utilization of Maxwell-Cattaneo law for MHD swirling flow through oscillatory disk subject to porous medium
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摘要 The present study aims to investigate the salient features of incompressible, hydromagnetic, three-dimensional flow of viscous fluid subject to the oscillatory motion of a disk. The rotating disk is contained in a porous medium. Furthermore, a time-invariant version of the Maxwell-Cattaneo law is implemented in the energy equation. The flow problem is normalized by obtaining similarity variables. The resulting nonlinear system is solved numerically using the successive over-relaxation method. The main results are discussed through graphical representations and tables. It is perceived that the thermal relaxation time parameter decreases the temperature curves and increases the heat trans- fer rate. The oscillatory curves for the velocity field demonstrate a decreasing tendency with the increasing porosity parameter values. Two- and three-dimensional flow phenom- ena are also shown through graphical results. The present study aims to investigate the salient features of incompressible,hydromagnetic, three-dimensional flow of viscous fluid subject to the oscillatory motion of a disk. The rotating disk is contained in a porous medium. Furthermore, a time-invariant version of the Maxwell-Cattaneo law is implemented in the energy equation. The flow problem is normalized by obtaining similarity variables. The resulting nonlinear system is solved numerically using the successive over-relaxation method. The main results are discussed through graphical representations and tables. It is perceived that the thermal relaxation time parameter decreases the temperature curves and increases the heat transfer rate. The oscillatory curves for the velocity field demonstrate a decreasing tendency with the increasing porosity parameter values. Two-and three-dimensional flow phenomena are also shown through graphical results.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2019年第6期837-850,共14页 应用数学和力学(英文版)
关键词 time-dependent flow OSCILLATORY DISK porous medium magnetohydrody-namic (MHD) Maxwell-Cattaneo LAW numerical solution time-dependent flow oscillatory disk porous medium magnetohydrodynamic(MHD) Maxwell-Cattaneo law numerical solution
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