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首页> 外文期刊>International Journal of Multiphase Flow >Axisymmetric approach of a solid sphere toward a non-deformable planar slip interface in the normal stagnation flow-development of global rational approximations for resistance coefficients
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Axisymmetric approach of a solid sphere toward a non-deformable planar slip interface in the normal stagnation flow-development of global rational approximations for resistance coefficients

机译:常规停滞流中固体球向不可变形的平面滑移界面的轴对称方法-阻力系数全局有理逼近的发展

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摘要

In this paper a model was developed to describe the hydrodynamic force acting on the particle as it approaches a bubble with a mobile surface in an axisymmetric liquid flow. The particle size was considered to be sufficiently small relative to the bubble size that the bubble surface could be locally approximated to a planar interface. The model incorporated a bispherical coordinate system to derive a stream function for the liquid flow disturbed by the particle. The stream function was then used to calculate the hydrodynamic force acting on a particle of radius, R, as a function of the separation distance, H, from the bubble surface. The force equation was related to the modified Stokes equation to obtain an exact numerical solution for the correction factor, f_2. Finally, simplified analytical rational approximations for the whole range of the separation distance are presented, which are in good agreement with the exact numerical result, and can be readily applied to more general mineral flotation applications.
机译:在本文中,开发了一个模型来描述在轴对称液体流中,当粒子接近具有活动表面的气泡时,作用在粒子上的流体动力。认为该粒径相对于气泡尺寸足够小,使得气泡表面可以局部地近似于平面界面。该模型并入了双球坐标系,以导出粒子干扰液体流动的流函数。然后使用流函数来计算作用在半径为R的粒子上的流体动力,该流体动力是与气泡表面分离距离H的函数。力方程与修正的Stokes方程相关,以获得校正系数f_2的精确数值解。最后,给出了分离距离整个范围的简化解析有理近似值,它们与精确的数值结果非常吻合,可以很容易地应用于更一般的矿物浮选应用中。

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