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首页> 外文期刊>AIChE Journal >Axial Mass Transfer in Taylor Flow through Circular MicroChannels
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Axial Mass Transfer in Taylor Flow through Circular MicroChannels

机译:通过圆形微通道的泰勒流中的轴向质量传递

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摘要

A Computational Fluid Dynamics (CFD) model has been formulated to evaluate axial mixing in Taylor flow.The residence-time distribution (RTD) curves of a Taylor flow unit cell (comprised of a liquid slug and two half bubbles) is calculated numerically from a step-tracer simulation by solving the steady-state Navier-Stokes and the transient convection-diffusion equations for a variety of conditions (10 < Pe < 10~5,10~(-5) < Ca < 10~(-3)).The concentration calculated at the outlet of a unit cell gives the cell-density function,from which its RTD curve can be found.Two different trends in the unit cell RTD curves were observed with Pe.At high Pe,the curves have characteristic peaks,while at low Pe only one peak is found that decays slowly.The size and separation of the peaks is affected by the Pe,film thickness 5,and slug length,but not Re.The moments of the RTD curves are then used to assess literature unit cell models (CSTR-PFR,two-region,and the model of Thulasidas et al.) For Ped > 10 the CSTR-PFR model showed the largest difference from the CFD simulations,while the model by Thulasidas et al.showed reasonable agreement.The two-region model fitted the simulations,but only for Sh values significantly different from those found by literature correlations.For Ped < 10,the CSTR-PFR model gave the best predictions compared to the numerical simulations.A method for calculating the residence-time distribution of a reactor,based on the residence-time distribution of a unit cell by means of a convolution method,was also introduced and gave results which compared very well with experimental data.The short length of the reactor used in the experiments,however,could not allow proper differentiation from other models investigated,which also showed good agreement with the experimental data.Keywords:Taylor flow,dispersion,axial mixing
机译:建立了计算流体动力学(CFD)模型以评估泰勒流动中的轴向混合。泰勒流动单位单元(由液体团和两个半气泡组成)的停留时间分布(RTD)曲线是根据通过求解稳态Navier-Stokes和瞬态对流扩散方程(10 10的文献单位细胞模型(CSTR-PFR,两个区域和Thulasidas等人的模型) CSTR-PFR模型显示出与CFD模拟最大的差异,而Thulasidas等人的模型显示出合理的一致性。两区域模型拟合模拟,但仅Sh值与文献相关性发现的显着不同。 Ped <10,与数值模拟相比,CSTR-PFR模型提供了最好的预测。一种基于反应堆滞留时间分布的计算方法,该方法基于卷积法基于晶胞的滞留时间分布,还介绍了该方法,并给出了与实验数据非常吻合的结果。实验中使用的反应器长度短,但是无法与其他研究模型进行适当区分,这也与实验数据具有很好的一致性。流动,分散,轴向混合

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