带静态内部结构的微通道中叠加振荡流的影响--数值研究

Navya Manthani, Vijaya Lakshmi Nanavath, Sreepriya Vedantam
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引用次数: 0

摘要

根据有限的文献报道,在轴向流上叠加振荡流有望进一步增强混合现象。对这种叠加流的物理特性进行详细研究,将有助于扩大具有叠加振荡流的静态混合器在连续运行模式下的应用范围。以计算流体动力学(CFD)为工具,研究了具有静态内部结构的毫微通道中水-醋酸乙烯酯系统在层流状态下的流动行为。建立了一个 CFD 模型,并与有关 Kenics 静态混合器的文献报告进行了验证。在 Ren = 5 和 Reo = 20-65 的条件下,研究了叠加在毫微通道轴向流上的振荡流的影响。针对两种不同的几何形状(1)无内管和(2)有内管,以及两种不同的速度(1)净轴向速度和(2)叠加振荡速度,进行了停留时间分布(RTD)研究和数值比较。这些热电阻研究结果表明,在具有叠加振荡流的静态内管通道中,热电阻的分布很明显,其次是具有净轴向速度的静态内管通道,然后是无内管通道。研究还发现,带有振荡流 > 净轴向流 > 无内管的静态内管的佩克莱特数(Pe)为 736 > 641 > 315。此外,还详细讨论了速度大小、压力和 Q 值标准,以了解毫微米通道中的流体流动行为。通过这项研究,我们了解到,与没有内管的管子相比,叠加振荡流和静态内管会增强混合效果。
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 superimposing oscillatory flow in a milli‐channel with static internals—A numerical study
Superimposition of oscillatory flow over the axial flow is expected to further enhance the mixing phenomenon based on the limited reported literature. A detailed study on the physics of such superimposed flows will be useful to widen the scope of application of static mixers with superimposed oscillatory flow in continuous modes of operation for several purposes. The flow behaviour of a water–vinyl acetate system in a milli‐channel with static internals is studied under the laminar flow regime using computational fluid dynamics (CFD) as a tool. A CFD model is developed and validated with reported literature on a Kenics static mixer. The effect of oscillatory flow superimposed over the axial flow in a milli‐channel is studied for Ren = 5 and Reo = 20–65. Residence time distribution (RTD) studies have been carried out and compared numerically for two different geometries, (1) tube without an internal and (2) tube with internals, for two different velocities, (1) net axial velocity and (2) superimposed oscillatory velocity. Results of these RTD studies indicate a sharp distribution in the channel with static internals having superimposed oscillatory flow followed by the channel with static internals with net axial velocity and then a tube without an internal. It is also found that Péclet number (Pe) for static internals with oscillatory flow > net axial flow > tube without an internal (736 > 641 > 315). Further, velocity magnitude, pressure, and Q‐criterion are discussed in detail to understand fluid flow behaviour in the milli‐channel. From this research, it is understood that superimposing oscillatory flow along with static internals resulted in enhanced mixing when compared with a tube with no internal.
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