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A novel and energy-efficient coaxial mixer for agitation of non-Newtonian fluids possessing yield stress

机译:一种用于搅拌具有屈服应力的非牛顿流体的新型节能同轴混合器

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摘要

A novel impeller called ASI (a combination of the A200 and the Scaba impellers) has been introduced in this paper. By using electrical resistance tomography (ERT) and computational fluid dynamics (CFD), the performance of the ASI impeller in the agitation of the yield-pseudoplastic fluids was assessed and compared to the performances of the Rushton (a radial impeller), ARI (an axial-radial impeller), and A200 (an axial impeller) impellers in terms of power consumption and cavern sizes. The new ASI impeller exhibited superior performance in the mixing of the pseudoplastic fluid possessing yield stress. Agitation of such a non-Newtonian fluid in a vessel results in the formation of cavern around the impeller. An enlarged cavern can be achieved by increasing the impeller speed. However, this leads to increased power consumption as well as non-uniform mixing in the vessel, i.e. a high-shear region around the impeller and dead zones at the wall and the bottom. These issues can be resolved by using a coaxial mixer, a combination of a central impeller and an anchor. Our data revealed that the anchor-ASI impeller, the combination of the novel impeller and the anchor, was the most efficient mixer for the agitation of the yield-pseudoplastic fluids in term of mixing energy compared to the other coaxial mixers employed in this study.
机译:本文介绍了一种称为ASI的新型叶轮(A200和Scaba叶轮的组合)。通过使用电阻层析成像(ERT)和计算流体力学(CFD),评估了ASI叶轮在搅动假塑性流体时的性能,并将其与Rushton(径向叶轮),ARI(就功率消耗和洞穴尺寸而言,轴流式叶轮)和A200(轴流式叶轮)叶轮。新型ASI叶轮在混合具有屈服应力的假塑性流体时表现出卓越的性能。容器中这种非牛顿流体的搅动导致叶轮周围形成洞穴。通过增加叶轮速度可以扩大洞穴。然而,这导致功率消耗增加以及容器中的不均匀混合,即叶轮周围的高剪切区域以及壁和底部的死区。这些问题可以通过使用同轴混合器,中央叶轮和锚固件的组合来解决。我们的数据显示,与本研究中使用的其他同轴混合器相比,就混合能而言,锚定ASI叶轮(新型叶轮和锚定的组合)是搅拌产量-拟塑性流体的最有效混合器。

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