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Revolving Ferrofluid Flow under the Influence of MFD Viscosity and Porosity with Rotating Disk

Revolving Ferrofluid Flow under the Influence of MFD Viscosity and Porosity with Rotating Disk
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摘要 In the present case, we have studied the effect of magnetic field-dependent viscosity (MFD) along with porosity on the revolving Axi-symmetric steady ferrofluid flow with rotating disk by solving the boundary layer equations using Neuringer-Rosensweig (NR) model. Here, we have calculated the velocity components and pressure for different values of MFD viscosity (k) and porosity (ε) with the variation of Karman’s dimensionless parameter α. Also, we have calculated the displacement thickness of the boundary layer and total volume flowing outward the z-axis. The numerical results which are obtained for various flow characteristics are shown graphically. In the present case, we have studied the effect of magnetic field-dependent viscosity (MFD) along with porosity on the revolving Axi-symmetric steady ferrofluid flow with rotating disk by solving the boundary layer equations using Neuringer-Rosensweig (NR) model. Here, we have calculated the velocity components and pressure for different values of MFD viscosity (k) and porosity (ε) with the variation of Karman’s dimensionless parameter α. Also, we have calculated the displacement thickness of the boundary layer and total volume flowing outward the z-axis. The numerical results which are obtained for various flow characteristics are shown graphically.
机构地区 不详
出处 《Journal of Electromagnetic Analysis and Applications》 2011年第9期378-386,共9页 电磁分析与应用期刊(英文)
关键词 Axi-Symmetric Rotating DISK Boundary Layer FERROMAGNETIC Fluid Magnetic Field POROSITY Axi-Symmetric Rotating Disk Boundary Layer Ferromagnetic Fluid Magnetic Field Porosity
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