Mahammedi Abdelkader, Tayeb Naas Toufik, Kim Kwang-Yong, Hossain Shakhawat
Department of Mechanical Engineering, University of Djelfa, Djelfa 17000, Algeria.
Gas Turbine Joint Research Team, University of Djelfa, Djelfa 17000, Algeria.
Micromachines (Basel). 2021 Nov 30;12(12):1494. doi: 10.3390/mi12121494.
In this work, a numerical investigation was analyzed to exhibit the mixing behaviors of non-Newtonian shear-thinning fluids in Kenics micromixers. The numerical analysis was performed using the computational fluid dynamic (CFD) tool to solve 3D Navier-Stokes equations with the species transport equations. The efficiency of mixing is estimated by the calculation of the mixing index for different cases of Reynolds number. The geometry of micro Kenics collected with a series of six helical elements twisted 180° and arranged alternately to achieve the higher level of chaotic mixing, inside a pipe with a Y-inlet. Under a wide range of Reynolds numbers between 0.1 to 500 and the carboxymethyl cellulose (CMC) solutions with power-law indices among 1 to 0.49, the micro-Kenics proves high mixing Performances at low and high Reynolds number. Moreover the pressure losses of the shear-thinning fluids for different Reynolds numbers was validated and represented.
在这项工作中,进行了数值研究以展示非牛顿剪切变稀流体在凯尼克思微混合器中的混合行为。使用计算流体动力学(CFD)工具进行数值分析,以求解三维纳维 - 斯托克斯方程和物种输运方程。通过计算不同雷诺数情况下的混合指数来估计混合效率。微型凯尼克思的几何结构由一系列六个扭转180°并交替排列的螺旋元件组成,以在带有Y形入口的管道内实现更高水平的混沌混合。在0.1至500的广泛雷诺数范围内以及幂律指数在1至0.49之间的羧甲基纤维素(CMC)溶液中,微型凯尼克思在低雷诺数和高雷诺数下均表现出高混合性能。此外,还验证并展示了不同雷诺数下剪切变稀流体的压力损失。