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Optimised chaotic mixer configurations for process industries: a numerical study

机译:针对过程工业的优化混沌混合器配置:数值研究

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摘要

A numerical investigation of chaotic laminar flow and heat transfer in isothermal-wall square-channel configurations is presented. The computations, based on a finite-volume method with the SIMPLEC algorithm, are conducted in terms of Péclet numbers ranging from 7 to 7×105. The geometries, based on the split-and-recombine (SAR) principle, are first proposed for micromixing purposes, and are then optimized and scaled up to three-dimensional minichannels with 3-mm sides that are capable of handling industrial fluid manipulation processes. The aim is to assess the feasibility of this mass- and heat- transfer technique for out-of-laboratory commercial applications and to compare different configurations from a process intensification point of view. The effects of the geometry on heat transfer and flow characteristics are examined. Results show that the flux recombination phenomenon mimicking the baker’s transform in the SAR-1 and SAR-2 configurations produces chaotic structures and promotes mass transfer. This phenomenon also accounts for higher convective heat transfer exemplified by increased values of the Nusselt number compared to the chaotic continuous-flow configuration and the baseline plain square-duct geometry. Energy expenditures are explored and the overall heat transfer enhancement factor for equal pumping power is calculated. The SAR-2 configuration reveals superior heat-transfer characteristics, enhancing the global gain by up to 17-fold over the plain duct heat exchanger.
机译:提出了等温壁方通道结构中混沌层流和传热的数值研究。基于SIMPLEC算法的有限体积方法,计算范围为7至7×105的佩克莱特数。首先,基于拆分和混合(SAR)原理提出了几何形状,然后将其用于微混合,然后对其进行优化和缩放,使其具有3mm边的三维微型通道,能够处理工业流体操纵过程。目的是评估这种传质和传热技术在实验室以外的商业应用中的可行性,并从过程强化的角度比较不同的配置。检查了几何形状对热传递和流动特性的影响。结果表明,模仿面包师在SAR-1和SAR-2构型中的转变的通量重组现象会产生混沌结构并促进质量转移。这种现象还说明了较高的对流传热,例如,与混乱的连续流构型和基线平面方管几何形状相比,Nusselt值增加了。探索了能量消耗,并计算了相等泵浦功率的总传热增强因子。 SAR-2构造具有出色的传热特性,与普通管道热交换器相比,整体增益提高了多达17倍。

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