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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >A measure of mixing from Lagrangian tracking and its application to granular and fluid flow systems
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A measure of mixing from Lagrangian tracking and its application to granular and fluid flow systems

机译:拉格朗日跟踪的混合度量及其在颗粒和流体流动系统中的应用

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This work concerns the development of two new indices that are extensive enough to be used to assess the mixing efficiency of both granular and fluid flow systems. They are based on the theory of principal component analysis and the concept of mixing in the weak and strong sense, and can be obtained from tracer trajectories (Lagrangian tracking) either numerically through computer simulation or experimentally by means of nonintrusive methods. It is explained how these measures, which in a way bridge the gap between global mixing properties and the local viewpoint of dynamical systems and chaotic theory, can provide the main mixing directions in a flow system and upper bounds for the mixing curves and mixing times. Two solid mixing cases and one fluid mixing case are presented to illustrate the wealth of detail provided by these two measures.
机译:这项工作涉及两个新指标的开发,该指标足够广泛,可用于评估颗粒和流体流动系统的混合效率。它们基于主成分分析的理论以及弱和强混合的概念,可以通过计算机模拟或通过非侵入性方法从示踪剂轨迹(拉格朗日跟踪)中获得数值。解释了这些措施如何弥合整体混合特性与动力系统和混沌理论的局部观点之间的差距,如何提供流动系统中的主要混合方向以及混合曲线和混合时间的上限。提出了两个固体混合箱和一个流体混合箱,以说明这两种措施提供的大量详细信息。

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