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UNSTEADY BOUNDARY LAYER FLOW ALONG A STRETCHING CYLINDER AN ANALYTICAL SOLUTION | Science Publications

机译:拉伸圆柱体的非定常边界层流解析解科学出版物

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> The axisymetric laminar boundary layer unsteady flow along a continuously stretching cylinder immersed in a viscous and incompressible fluid is studied. The governing partial boundary layer equations in cylindrical form are first transformed into ordinary differential equations these equations are solved analytically using the optimal modified Homotopy Asymptotic method in order to get a closed form solution for the dimensionless functions f and è. The main object of this study is to investigate the effect of an unsteady motion of a stretching cylinder on the flow and heat transfer characteristics such as surface skin friction and surface heat flux. These characteristics have a direct effect on the quality of the final product of the fiber manufacturing and extrusion processes. Considerable effects were found for the dynamic parameter (?), the curvature parameter (?) and the prandtl number (pr) on the velocity and the heat transfer.
机译: >研究了沿连续拉伸圆柱体的轴对称层流边界层非恒定流动,该圆柱体浸没在粘性和不可压缩的流体中。首先将圆柱形的支配部分边界层方程式转化为常微分方程式,然后使用最优的改进的Hoomopy渐近方法对这些方程式进行解析求解,以获得无量纲函数f和è的封闭形式解。这项研究的主要目的是研究拉伸缸的非定常运动对流动和传热特性(例如表面皮肤摩擦和表面热通量)的影响。这些特性直接影响纤维制造和挤出过程的最终产品质量。发现动力学参数(?​​),曲率参数(?)和普朗特数(pr)对速度和传热有相当大的影响。

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