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Numerical investigation on the performance and flow pattern of two novel innovative designs of four-inlet cyclone separator

机译:四进样旋风分离器两种新型创新设计性能和流量模式的数值研究

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摘要

In solid particle separation process, cyclone separators are commonly used due to their simplicity and low-cost manufacture. A reference design S1 and two novel designs C4, N4 of four-inlet cyclone separator have been investigated computationally using the Reynolds Stress Model for turbulent flow and the Discrete Phase Model for tracking the particles. The numerical model has been validated and confirmed to be a reasonable good candidate for the investigation. The results show that, the design S1 provides the lowest average Euler number (4.415) and the design C4 provides the smallest average cut-off diameter (1.399 mu m). As comparing the performances using weighted sum method, both two novel designs provide the better performance than the reference design S1. The innovative design N4 delivers the best performance which is 1 % and 0.1 % better in performance than S1 and C4, respectively.
机译:在固体颗粒分离过程中,由于其简单性和低成本制造而通常使用旋风分离器。 使用雷诺应力模型对湍流和离散相模型来计算,通过用于跟踪颗粒的湍流流量和离散相模型的雷诺应力模型来研究参考设计S1和两个新颖的设计C4,N4。 数值模型已被验证并确认是调查的合理良好候选人。 结果表明,设计S1提供了最低的平均欧拉数(4.415),设计C4提供了最小的平均截止直径(1.399μm)。 随着使用加权和方法的性能进行比较,两种新颖设计都提供比参考设计S1更好的性能。 创新的设计N4分别提供比S1和C4更好的最佳性能,比S1和C4更好。

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