Lin Wenqian, Li Zhenna, Zhang Shanliang, Lin Jianzhong
School of Media and Design, Hangzhou Dianzi University, Hangzhou 310018, China.
State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, China.
Polymers (Basel). 2023 Apr 20;15(8):1956. doi: 10.3390/polym15081956.
The contraction/expansion laminar flow containing rodlike particles in power-law fluid is studied numerically when the particles are in a dilute phase. The fluid velocity vector and streamline of flow are given at the finite Reynolds number (Re) region. The effects of Re, power index and particle aspect ratio on the spatial and orientation distributions of particles are analyzed. The results showed that for the shear-thickening fluid, particles are dispersed in the whole area in the contraction flow, while more particles are gathered near the two walls in the expansion flow. The spatial distribution of particles with small is more regular. has a significant, has a moderate, but Re has a small impact on the spatial distribution of particles in the contraction and expansion flow. In the case of large Re, most particles are oriented in the flow direction. The particles near the wall show obvious orientation along the flow direction. In shear-thickening fluid, when the flow changes from contraction to expansion, the orientation distribution of particles becomes more dispersed; while in shear-thinning fluid, the opposite is true. More particles orient to the flow direction in expansion flow than that in contraction flow. The particles with a large tend to align with the flow direction more obviously. Re, and have great influence on the orientation distribution of particles in the contraction and expansion flow. Whether the particles initially located at the inlet can bypass the cylinder depends on the transverse position and initial orientation of the particles at the inlet. The number of particles with = 90° bypassing the cylinder is the largest, followed by = 45° and = 0°. The conclusions obtained in this paper have reference value for practical engineering applications.
研究了幂律流体中含棒状颗粒的收缩/扩张层流在颗粒处于稀相时的情况。给出了有限雷诺数(Re)区域内流体速度矢量和流线。分析了Re、幂指数和颗粒长径比对方位分布的影响。结果表明,对于剪切增稠流体,颗粒在收缩流中分散在整个区域,而在扩张流中更多颗粒聚集在两壁附近。小长径比颗粒的空间分布更规则。对收缩和扩张流中颗粒的空间分布有显著影响,有中等影响,但Re影响较小。在大Re情况下,大多数颗粒沿流动方向取向。壁附近的颗粒沿流动方向有明显的取向。在剪切增稠流体中,当流动从收缩变为扩张时,颗粒的取向分布变得更加分散;而在剪切稀化流体中则相反。扩张流中比收缩流中更多颗粒取向于流动方向。大长径比的颗粒更明显地倾向于与流动方向对齐。Re、和对收缩和扩张流中颗粒的取向分布有很大影响。初始位于入口处的颗粒是否能绕过圆柱体取决于颗粒在入口处的横向位置和初始取向。长径比为90°的颗粒绕过圆柱体的数量最多,其次是45°和0°。本文所得结论对实际工程应用具有参考价值。