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优化微流体组件设计的工具箱。

Toolbox for the design of optimized microfluidic components.

作者信息

Mott David R, Howell Peter B, Golden Joel P, Kaplan Carolyn R, Ligler Frances S, Oran Elaine S

机构信息

Laboratory for Computational Physics and Fluid Dynamics, Naval Research Laboratory, Washington, DC 20375, USA.

出版信息

Lab Chip. 2006 Apr;6(4):540-9. doi: 10.1039/b516459a. Epub 2006 Mar 3.

Abstract

A computational "toolbox" for the a priori design of optimized microfluidic components is presented. These components consist of a microchannel under low-Reynolds number, pressure-driven flow, with an arrangement of grooves cut into the top and bottom to generate a tailored cross-channel flow. An advection map for each feature (i.e., groove of a particular shape and orientation) predicts the lateral transport of fluid within the channel due to that feature. We show that applying these maps in sequence generates an excellent representation of the outflow distribution for complex designs that combine these basic features. The effect of the complex three-dimensional flow field can therefore be predicted without solving the governing flow equations through the composite geometry, and the resulting distribution of fluids in the channel is used to evaluate how well a component performs a specified task. The generation and use of advection maps is described, and the toolbox is applied to determine optimal combinations of features for specified mixer sizes and mixing metrics.

摘要

本文介绍了一种用于优化微流体组件先验设计的计算“工具箱”。这些组件由处于低雷诺数、压力驱动流状态下的微通道组成,其顶部和底部设有一系列凹槽,以产生特定的跨通道流。针对每个特征(即特定形状和方向的凹槽)的平流图可预测由于该特征导致的通道内流体的横向传输。我们表明,按顺序应用这些图可以很好地表示结合了这些基本特征的复杂设计的流出分布。因此,无需通过复合几何形状求解控制流方程,就能预测复杂三维流场的影响,并且通道内流体的最终分布用于评估组件执行特定任务的效果。文中描述了平流图的生成和使用,并将该工具箱应用于确定特定混合器尺寸和混合指标下特征的最佳组合。

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