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首页> 外文期刊>Polish journal of chemical technology >Lagrangian simulation and analysis of the power-law fluid mixing in the two-blade circular mixers using a modified WCSPH method
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Lagrangian simulation and analysis of the power-law fluid mixing in the two-blade circular mixers using a modified WCSPH method

机译:使用改进的WCSPH方法对两叶片圆形混合器中的幂律流体混合进行拉格朗日模拟和分析

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In the present study, we introduce a robust modified Weakly Compressible Smoothed Particle Hydrodynamics (WCSPH) method in order to examine miscible mixing within a two-blade paddle mixer. Since it has a Lagrangian nature and it is based on particles, Smoothed Particle Hydrodynamics (SPH) is an appropriate and convenient method for simulating the moving boundary problems and tracking the particles in the mixing process. The present study thus introduces a convenient SPH method for modelling the mixing process for the power-law fluids. Two geometries for the mixer are examined and the effects of the power-law index on the fluid mixing are investigated. The results show that the geometric change from circular chamber to twin chamber considerably increases the mixing rate (by at least 49%). The results also indicate that the twin chamber mixer is more efficient for the fluids with higher power-law index.
机译:在本研究中,我们介绍了一种健壮的改进的弱可压缩平滑粒子流体动力学(WCSPH)方法,以检查两叶片桨式混合机内的可混溶混合。由于它具有拉格朗日性质,并且基于粒子,因此平滑粒子流体力学(SPH)是模拟移动边界问题并在混合过程中跟踪粒子的合适且便捷的方法。因此,本研究介绍了一种方便的SPH方法,用于对幂律流体的混合过程进行建模。检查了混合器的两种几何形状,并研究了幂律指数对流体混合的影响。结果表明,从圆形腔到双腔的几何变化显着提高了混合速率(至少增加了49%)。结果还表明,双室混合器对于具有更高幂律指数的流体更有效。

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