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Drag reduction in a flat-plate boundary layer flow by polymer additives - art. no. 065104

机译:聚合物添加剂在平板边界层流中的减阻作用-艺术。没有。 065104

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This paper presents a theoretical study on the velocity distribution and the friction factor of boundary layer flows with polymer additives starting from the concept of "stress deficit." A novel method of order of magnitude analysis is developed, which converts the governing equations of boundary layer flow into a solvable ordinary differential equation, thus the total shear stress distribution is obtained, then the formulas for the mean velocity profiles and the friction factor for a boundary layer flow are derived after introducing appropriate expressions for the "effective viscosity" and the thickness of viscous sublayer. The derived velocity equation is able to depict the velocity from a solid wall to the outer edge of boundary layer with or without polymer additives using only one fitted parameter D* that is a function of polymer species, its concentration, and Reynolds number. By integrating the velocity profiles, the friction factor and the thickness of boundary layer development are obtained. Experimental data agree well with the theoretical results. (c) 2005 American Institute of Physics.
机译:本文从“应力不足”的概念出发,对聚合物添加剂对边界层流动的速度分布和摩擦系数进行了理论研究。提出了一种新的量级分析方法,将边界层流动的控制方程式转换为可解的常微分方程式,从而得到总的切应力分布,然后给出了平均速度分布和摩擦系数的公式。边界层流量是在引入“有效粘度”和粘性子层厚度的适当表达式后得出的。导出的速度方程式仅使用一个拟合参数D *(它是聚合物种类,其浓度和雷诺数的函数)即可描述从有或没有聚合物添加剂的固体壁到边界层外边缘的速度。通过对速度分布进行积分,可以获得摩擦系数和边界层展开的厚度。实验数据与理论结果吻合良好。 (c)2005年美国物理研究所。

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