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Numerical analysis of Walters-B fluid flow and heat transfer over a stretching cylinder

机译:拉伸缸中Walters-B流体流动和传热的数值分析

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摘要

Two-dimensional hydromagnetic flow and heat transfer of Walters-B fluid towards a stagnation point region over a stretching cylinder is discussed. Constitutive equations are transformed into dimensionless form by means of suitable similarity transformations. Spectral quasi-linearization method is employed to obtain the solution of similarity equations. Comparison of computed results with existing results in the limiting case of a flat sheet is also provided. Analysis of obtained results is performed through graphs to discuss the influence of emerging parameters on the velocity and temperature profiles. The flow and heat transfer characteristics are analyzed through parameters representing curvature of cylinder, velocity ratio parameter, magnetic parameter, and Weissenberg number. The curvature of the cylinder has significant impact on the velocity and temperature. A magnetic field applied externally suppresses the bulk motion and alters the momentum boundary layer thickness. The drag and heat transfer rate on the surface of the cylinder are examined through skin friction and heat transfer coefficients. Furthermore, streamlines are drawn to see the flow pattern.
机译:讨论了二维水磁流和Walters-B流体向拉伸圆柱体上的滞止点区域的传热。本构方程通过适当的相似性变换转换为无量纲形式。采用谱拟线性化方法获得相似性方程的解。还提供了在平板的极限情况下计算结果与现有结果的比较。通过图形对获得的结果进行分析,以讨论新兴参数对速度和温度曲线的影响。通过代表圆柱曲率,速度比参数,磁参数和魏森伯格数的参数来分析流动和传热特性。圆柱体的曲率对速度和温度有重要影响。外部施加的磁场会抑制整体运动并更改动量边界层的厚度。通过皮肤摩擦和热传递系数检查圆柱体表面上的阻力和热传递速率。此外,绘制流线以查看流态。

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