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Fish hook effect in centrifugal classifiers - a further analysis

机译:离心分级机中的鱼钩效应-进一步分析

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Two distinctly different types of fish hooks are reported in literature, of which, the most common shape shows a decrease in efficiency to a minimum followed by a monotonic increase with size. The other shape exhibits an increase in efficiency with size till a critical point is reached; the efficiency then decreases till a minimum is reached, followed by a monotonic increase with size.Early theories to explain fish hook phenomenon through variable bypass are shown to be simple mathematical transformations. The 'mechanistic model' attributes occurrence offish hook to a sharp fall in settling velocities in a centrifugal field with change in flow from Stokesian to transient regime. This explanation is shown to be dubious and not in conformity with known principles of physics. Also, the boundary layer model and the entrainment model require considerable refinement as mechanics of fluid flow around irregular particles is not well developed. It is shown that CFD simulations show efficiency curves with or without fish hook effect depending upon the assumptions for simulation.The method of sizing analyses in detection of fish hook effect is critically discussed. Most of the occurrences of fish hook are reported when sizing analyses are carried out by laser diffractometry using Fraunhofer approximation for data interpretation. When alternate sizing techniques, such as Andreasen pipette, disc centrifuge, Coulter counter, Dynamic Light Scattering etc. are used or when Mie theory is applied in Laser techniques, fish hook is not reported. Fish hook effect appears to be repeatable where it was studied. However, the conditions of reproducibility are to be specified by the proponents, if the phenomenon is to find general acceptance, ft is likely that fish hook would continue to be regarded as a placebo. Its exclusion in simulation models does not appear to affect cyclone performance prediction.
机译:文献中报道了两种截然不同类型的鱼钩,其中,最常见的形状显示效率降低到最小,然后随尺寸单调增加。另一形状在达到临界点之前,效率随着尺寸的增加而增加;效率然后下降,直到达到最小值,然后随着尺寸的增加而单调增加。早期通过可变旁路解释鱼钩现象的理论被证明是简单的数学变换。 “机械模型”将鱼钩的出现归因于离心力场中沉降速度的急剧下降,其中流量从斯托克斯流变到瞬态。该解释显示是可疑的,并且与已知的物理学原理不一致。另外,边界层模型和夹带模型还需要进行大量改进,因为围绕不规则颗粒的流体流动机理尚未得到很好的发展。结果表明,CFD仿真显示了取决于仿真假设的有无鱼钩效应的效率曲线。对鱼钩效应检测中的尺寸分析方法进行了严格讨论。当使用Fraunhofer近似进行数据分析的激光衍射法进行尺寸分析时,报告了大多数鱼钩的发生。当使用其他尺寸调整技术(例如Andreasen移液器,圆盘离心机,Coulter计数器,动态光散射等)时,或者在激光技术中应用Mie理论时,都不会报告鱼钩。鱼钩效应在被研究的地方似乎是可重复的。但是,可重复性的条件由支持者指定,如果该现象被人们普遍接受,则鱼钩很可能会继续被视为安慰剂。在模拟模型中排除它似乎不会影响旋风分离器的性能预测。

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