螺旋盘管反应器中混沌界面拉伸对双分子化学反应的影响

David R. Sawyers , Mihir Sen , Hsueh-Chia Chang
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引用次数: 22

摘要

我们研究了两种最初分离的反应物在不同卷曲几何形状的管式反应器中的双分子化学反应的产率。假设具有高质量佩莱特数Pe的层流和定常流。通过研究薄界面边界层上的反应,得到了慢反应的渐近近似。对于直管,发现在给定轴向位置z处的面积平均产物质量分数为z32 Λ(z) Pe−12,其中Λ(z)是分离两种反应物的界面长度。盘绕和流动运动学对Λ(z)有很强的影响。二次横向流动在螺旋线圈中产生的有规律的混合使界面与z线性拉伸,使产物质量分数与z的关系为z52。在具有沿流动方向周期性变化的卷轴的线圈中,混沌混合和拉伸可以进一步增强。如果开关长度超过临界值,则混沌作用的折叠和拉伸导致长度呈指数增长,该长度可与正Lyapunov指数相关。数值解表明,在快速反应中,混沌混合的这种增强作用也存在,并且当反应边界层开始重叠或与壁面相互作用时,在长、高产的反应器中,紧密和不均匀的界面分离会抵消拉伸效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of chaotic interfacial stretching on bimolecular chemical reaction in helical-coil reactors

We investigate the yield of bimolecular chemical reaction between two initially separated reactants in a tubular reactor of different coiling geometries. Laminar and steady flow with high mass Peclet number, Pe, are assumed. Asymptotic approximations for slow reactions are obtained by studying the reaction at a thin interfacial boundary layer. For a straight tube it is found that the area-averaged product mass fraction at a given axial position z goes z32 Λ(z) Pe12, where Λ(z) is the length of the interface separating the two reactants. Coiling and flow kinematics have a strong effect on Λ(z). Regular mixing produced by secondary transverse flow in a helical coil stretches the interface linearly with z, yielding a z52 dependence for hte product mass fraction. Further enhancement derived from chaotic mixing and stretching is possible in a coil with a coiling axis that is periodically changed in the flow direction. If the switching length exceeds a critical value, the folding and stretching of the chaotic action leads to an exponentially growing length that can be related to a positive Lyapunov exponent. Numerical solutions show that this enhancement by chaotic mixing also exists for fast reactions, and that the stretching effect can be overwhelmed by tight and uneven interfacial separation in a long, high-yield reactor when the reaction boundary layers begin to overlap or interact with the wall.

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