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Numerical Solution for Accelerated Rotating Disk in a Viscous Fluid 被引量:3

Numerical Solution for Accelerated Rotating Disk in a Viscous Fluid
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摘要 The problem of a disk rotating in a viscous fluid has been investigated. The disk is accelerated with angular velocity proportional to time. Employing suitable similarity transformations the governing partial differential equations are transformed in to ordinary differential form. The resulting equations are solved numerically using SOR method and Simpson’s (1/3) rule. The results have been improved by using Richardson’s extrapolation. The effect of the non-dimensional parameter s which measures unsteadiness is observed on velocity components, skin friction coefficient and torque of the disk. The problem of a disk rotating in a viscous fluid has been investigated. The disk is accelerated with angular velocity proportional to time. Employing suitable similarity transformations the governing partial differential equations are transformed in to ordinary differential form. The resulting equations are solved numerically using SOR method and Simpson’s (1/3) rule. The results have been improved by using Richardson’s extrapolation. The effect of the non-dimensional parameter s which measures unsteadiness is observed on velocity components, skin friction coefficient and torque of the disk.
出处 《Applied Mathematics》 2013年第6期899-902,共4页 应用数学(英文)
关键词 NEWTONIAN FLUIDS Numerical Analysis Rotating DISK Newtonian Fluids Numerical Analysis Rotating Disk
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