首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Gravity-driven azimuthal flow of a layer of thixotropic fluid on the inner surface of a horizontal tube
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Gravity-driven azimuthal flow of a layer of thixotropic fluid on the inner surface of a horizontal tube

机译:重力驱动水平管内表面一层触变流体的方位角流动

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摘要

The gravity-driven azimuthal flow of a layer of thixotropic paint on the inner surface of a horizontal tube is studied, considering surface tension effects. Using the lubrication theory, it was shown that a non-linear, fourth-order partial differential equation governs the time evolution of the paint layer thickness distribution along the azimuthal coordinate. Three parameters arise in the analysis, namely, the Bond number and two rheology-related parameters. The governing equation is integrated via a second-order accurate finite-difference scheme. The results showed that, in situations where the capillary force dominates (Bo < 1), displacement of the paint after application is very slow. For situations where the gravity force dominates (Bo > 1), an undulation on the interface arises near the tube bottom at sufficiently large times.
机译:考虑到表面张力效应,研究了水平管内表面上一层触变涂料的重力驱动方位角流。使用润滑理论,表明非线性的四阶偏微分方程控制着油漆层厚度分布沿方位角坐标的时间演化。分析中出现三个参数,即键数和两个与流变学相关的参数。控制方程通过二阶精确有限差分方案进行积分。结果表明,在毛细作用力占主导地位(Bo <1)的情况下,喷涂后涂料的移位非常缓慢。对于重力占主导地位(Bo> 1)的情况,足够大的时间在管底附近会出现界面波动。

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