首页> 外文会议>Proceedings of the 2002 ASME Joint U.S.-European Fluids Engineering Conference >THIN LIQUID FILM FLOW ON A ROTATING ANNULAR DISK: ASYMPTOTIC SOLUTION
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THIN LIQUID FILM FLOW ON A ROTATING ANNULAR DISK: ASYMPTOTIC SOLUTION

机译:旋转圆盘上的薄液膜流动:渐近解决方案

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We consider the axisymmetric flow of a Newtonian fluid associated with the spreading of a thin liquid film on a rotating annular disk. The effects of surface tension and gravity terms are included. The asymptotic solution for the free surface of the thin film is found using an expansion for the film thickness in powers of a small parameter characterizing the thickness of the film and applying the method of matched asymptotic expansion. This solution can be used to calculate the thickness of the film, the velocity field, and the pressure at any point on the disk with good accuracy. Numerical results are presented for a specific initial distribution of the film thickness. Many features of the spin-coating thinning process are captured by our asymptotic solution. We also produce results which are in excellent agreement with the experimental findings of Daughton and Givens (6) and Hwang and Ma (9).
机译:我们考虑牛顿流体的轴对称流动,这与旋转环形盘上的薄液膜的扩散有关。包括表面张力和重力项的影响。薄膜的自由表面的渐近解是通过以表征薄膜厚度的小参数的幂为单位对薄膜厚度进行扩展,并采用匹配的渐近扩展方法来找到的。该解决方案可用于以良好的精度计算膜的厚度,速度场和磁盘上任何点的压力。给出了膜厚度的特定初始分布的数值结果。我们的渐近解决方案体现了旋涂稀化过程的许多功能。我们还产生了与Daughton和Givens(6)以及Hwang和Ma(9)的实验结果非常吻合的结果。

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