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THE EXPERIMENTAL STUDY OF THE FLOW WITHIN A TRANSPARENT HYDROCYCLONE WITH A VORTEX FINDER ATTACHMENT

机译:透明水力旋流器内流动的实验研究涡旋探针附件

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The experimental studies of the flow behaviour within 50-mm hydrocyclones with and without a vortex finder attachment (Fin) have been performed. The flow characteristics within both hydrocyclones were observed visually and recorded both photographically and on video as the hydrocyclones are made of a transparent material. The development of the double-helical flow was observed; also the shape and diameter of the air-core have been examined for different values of operating pressure drop. It was found that the air-core is unstable and its size, shape and position are unfixed because of the instability of the gasliquid interface. The results also showed that the air core is related to the shape of the underflow discharge and is a function of the pressure drop. A regular spray discharge from the spigot was observed. The roping discharge was observed when an extension pipe was connected to the underflow outlet. An increase in pressure drop leads to an increase in aircore diameter and the angle of the underflow profile. However, the relationships between these three parameters are non-linear. The knowledge of the size and location of the air-core relative to the operating pressure drop can assist in the validation of computational fluid dynamics (CFD) simulation work. The separation performance of these two transparent hydrocyclones for a CaCO CaCO3 in water system has been investigated. In this study, the results showed that a fin-type vortex finder attachment could not increase the sharpness of separation but it could help in the thickening process. It can be seen that the separation performance does not depend only on the geometry and operating conditions, but also on slurry concentration and particle size distribution. The concentration of the feed slurry and the operating pressure drop strongly affect the sharpness of separation.
机译:已经进行了具有和不具有涡旋发现器附接(FIN)的50mm水力旋流器内的流动性的实验研究。随着透湿材料制成,在视觉上观察到氢旋流器内的流动特性并在照片上和视频记录。观察到双螺旋流动的发展;对于不同的操作压降值,已经检查了空气核的形状和直径。结果发现,由于气液机制界面的不稳定性,空心芯是不稳定的,其尺寸,形状和位置是未固定的。结果还表明,空气芯与下溢放电的形状有关,并且是压降的函数。观察到套管的正常喷射排出。当延长管连接到下流口时,观察到绳索放电。压降的增加导致气体直径的增加和下溢轮廓的角度。然而,这三个参数之间的关系是非线性的。空气核心相对于操作压降的尺寸和位置的知识可以有助于验证计算流体动力学(CFD)仿真工作。研究了这两种透明氢环酮的水系统中的透明氢旋塞酮的分离性能。在这项研究中,结果表明,翅片型涡旋发现器附件不能增加分离的锐度,但它可以有助于增厚过程。可以看出,分离性能仅取决于几何形状和操作条件,而且不依赖于浆料浓度和粒度分布。进料浆料的浓度和操作压降强烈影响分离的锐度。

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