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Exact and global rational approximate expressions for resistance coefficients for a colloidal solid sphere moving in a quiescent liquid parallel to a slip gas-liquid interface

机译:胶态固体球在静态液体中平行于滑气液界面移动的阻力系数的精确和全局有理近似表达式

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In this paper mathematical expressions have been developed to describe the hydrodynamic resistance force on a colloidal particle as it slides along a slip surface of a gas bubble held stationary in a quiescent liquid.The particle size was considered to be sufficiently small relative to the bubble size so that the bubble surface could be locally approximated to a planar interface.The modeling incorporated a bispherical coordinate transformation to solve the equations governing the liquid creeping flow disturbed by the particle.Exact numerical solutions tor the resistance coefficients of the particle-shearing motion parallel to the slip bubble surface were obtained as a function of the separation distance from the bubble surface.Finally,simplified analytical rational approximations for the whole range of the separation distance were presented,which were in good agreement with the exact numerical result.Importantly,the approximations for the modeling and simulation of the bubble-particle interactions are mathematically tractable.
机译:在本文中,已经开发出数学表达式来描述当胶体颗粒沿着静止在静止液体中的气泡的滑动表面滑动时,其对胶体颗粒的流体动力阻力,相对于气泡尺寸,该颗粒尺寸被认为足够小该模型结合了双球坐标变换来求解控制受颗粒扰动的液体蠕变流的方程式。精确的数值解决方案使颗粒剪切运动的阻力系数平行于最后,给出了分离距离整个范围的简化解析有理近似值,与精确的数值结果吻合。最后,给出了与分离距离的函数。用于气泡粒子的建模和仿真相互作用在数学上是易处理的。

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