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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental analysis on fluid flow and mass transfer characteristics of CMC solutions in wavy-walled tubes for steady and pulsating flow by PIV
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Experimental analysis on fluid flow and mass transfer characteristics of CMC solutions in wavy-walled tubes for steady and pulsating flow by PIV

机译:PIV稳态脉动管中CMC溶液流体流体流体流体流体流体传递特性的实验分析

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This paper reports experimental results for fluid flow and mass transfer of sodium carboxymethyl cellulose (CMC) solution in wavy-walled tubes under both steady and pulsating flows where the PIV technique is employed. The rheological properties of the solution are revealed from the present experiment, and it is found that CMC solutions are featured with a shear-thinning behavior when the concentration is above 500 ppm regardless of temperature. The findings demonstrate that the increasing concentration makes the mass transfer performance degradation of CMC solutions. However, the mass transfer rate could be improved with the increasing amplitude of wavy-walled tubes in pulsating flow. The presence of reverse flow promotes the mass transfer and they are mostly distributed in the deceleration regime in one pulsating cycle. An optimal oscillatory fraction corresponding to the highest mass transfer enhancement is obtained. Furthermore, the phase shift phenomenon is observed in pulsating flow and the phase difference increases with the Strouhal number and amplitude of tube, but it is unaffected by the wavelength of the tube, the polymer concentration and the oscillatory fraction of the flow rate.
机译:本文报告了在采用PIV技术的稳定和脉动流下的波状壁管中的羧甲基纤维素(CMC)溶液的流体流动和传质的实验结果。从本实验中揭示了溶液的流变性质,发现当浓度高于500ppm时,在浓度高于500ppm时,CMC溶液的特征在于。研究结果表明,浓度的增加使得CMC溶液的传质性能降低。然而,随着脉动流动中的波状管的幅度增加,可以提高传质速率。反向流动的存在促进了传质,它们主要分布在一个脉动循环中的减速状态。获得对应于最高传质增强的最佳振荡分数。此外,在脉动流动中观察相移现象,并且随管的稳定数和幅度增加相位差,但它不受管的波长,聚合物浓度和流速的振荡级分。

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