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首页> 外文期刊>Theoretical foundations of chemical engineering >Using Analytical Solutions to Evaluate the Variability of the Distribution of Concentrations of the Components of Specific Reactions in Microfluidic Systems
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Using Analytical Solutions to Evaluate the Variability of the Distribution of Concentrations of the Components of Specific Reactions in Microfluidic Systems

机译:使用分析解决方案评估微流体系统中特定反应组分浓度分布的可变性

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摘要

A number of methods for analyzing liquid media are based on carrying out specific reactions with the component to be determined. In microfluidic devices, due to the laminarity of the flow, it is difficult to organize uniform mixing of the reaction components, which deteriorates the reproducibility of the results of the reactions and the quality of the analysis. To improve the efficiency of passive mixing in microfluidic systems, you can use the input channel samples of variable geometry, in particular, with bends, or with a variable width. The mixing efficiency is directly related to the variability of reagent concentrations in the working area, and this characteristic is adequately evaluated through the dispersion of the concentration profile. To obtain an estimate of the dispersion of the concentration distribution, an analytical solution of the convective-diffusion equation using the method of moments is proposed. For this, the sample entry system-a straight section of constant width with an additional linearly expanding channel-is approximately replaced by an equivalent channel of constant width. Also, the values of convective velocity and diffusion coefficient are approximately replaced by averaged ones. The dispersion estimates obtained on the basis of an approximate analytical solution have an acceptable agreement with the results of numerical 2D modeling of convective mass transfer in COMSOL MULTYPHYSICS.
机译:用于分析液体介质的许多方法基于与待确定的组分进行特定的反应。在微流体装置中,由于流动的层状物,难以组织反应组分的均匀混合,这会降低反应结果和分析质量的再现性。为了提高微流体系统中被动混合的效率,您可以使用可变几何形状的输入通道样本,特别是弯曲,或具有可变宽度。混合效率与工作区域中的试剂浓度的可变性直接相关,并且通过浓度曲线的分散来充分评估该特性。为了获得浓度分布分散的估计,提出了使用矩的方法的对流 - 扩散方程的分析解。为此,样品进入系统 - 恒定宽度的直线部分,附加线性膨胀通道 - 大致由恒定宽度的等效通道替换。而且,对流速度和扩散系数的值大致由平均值替换。基于近似分析溶液获得的分散估计与COMSOL多中性学中的对流传质的数值2D模型结果具有可接受的协议。

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