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The influence of cam geometry and operating conditions on chaotic mixing of viscous fluids in a twin cam mixer

机译:凸轮几何形状和工作条件对双凸轮混合器中粘性流体的混沌混合的影响

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摘要

Smooth particle hydrodynamica (SPH) simulations were used to better understand the mixing performance of a class of two-dimensional Twin Cam mixers. The chaotic manifolds of the flow are used to describe the mixing and to identify isolated regions. For an equilateral triangle cam geometry, a figure-eight manifold structure traps a layer of fluid against the cam boundaries. Changes in the differential rotation and phase offsets between the cams results in modest improvements in the mixing rate across the manifold barrier. Reducing the apex angle of the triangle changes the manifold structure and allows the trapped layer of fluid to mix more effectively with the rest of the domain. This article shows that examining the chaotic manifolds within a typical industrial mixer can provide valuable insight into both the transient and long-term mixing processes, leading to a more focused exploration of possible mixer configurations and to practical improvements in mixing efficiency. ? 2010 American Institute of Chemical Engineers AIChE J, 2011
机译:光滑粒子流体动力学(SPH)模拟用于更好地理解一类二维Twin Cam混合器的混合性能。流的混沌歧管用于描述混合并标识隔离区域。对于等边三角形凸轮几何形状,八字形歧管结构会在凸轮边界处捕获一层流体。凸轮之间的差速旋转和相位偏移的变化会导致歧管隔板上混合速率的适度提高。减小三角形的顶角会改变歧管结构,并使捕获的流体层更有效地与其余区域混合。本文表明,检查典型的工业混合器中的混沌歧管可以提供有关瞬态和长期混合过程的宝贵见解,从而导致对可能的混合器配置进行更加集中的探索,并切实提高混合效率。 ? 2010美国化学工程师学会AIChE J,2011

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