Analysis of Mixing Performance in a Chaotic Mixer of non Newtonian Fluid

Publish Year: 1390
نوع سند: مقاله کنفرانسی
زبان: English
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NCFDACCI03_063

تاریخ نمایه سازی: 17 دی 1389

Abstract:

Mixing of polymers as highly viscous materials that require optimal mixing of particular, is of particular interest in industry. The effectiveness of mixer can be evaluated by looking at the ability of the mixer to distribute ingredients and stretch the fluid particles. In this study the enhancement of mixing in the mixer based on chaos theory by 3D numerical simulation is analyzed. The chaotic advection involves a combination of repeated stretching and folding of fluid elements in combination with diffusion. In order to show the chaotic behavior of fluid trajectories numerically three characteristics of a Lagrangian chaotic system (strong stretching and folding of material lines and surfaces, sensitivity to initial conditions, horse shoe maps) are visualized. Lyapunov exponents which quantify the exponential divergence of initially close state-space trajectories and estimate the amount of chaos in a system were calculated. Velocity profiles, particles trajectories were also calculated. The results indicate that the flow filed is a combination of coexistence of both the chaotic and non-chaotic zones, with high and poor mixing performance respectively.

Authors

S.M. Hosseinalipour

Iran University of Science & Technology/ Computer Aided Engineering Lab

A Tohidi

Iran University of Science & Technology/ Computer Aided Engineering Lab

M Shokrpour

Iran University of Science & Technology/ Computer Aided Engineering Lab