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Study of the separation efficiency and the flow field of a dynamic cyclone

机译:动态旋风分离器的分离效率和流场研究

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摘要

The separation efficiency and the flow field of a dynamic cyclone were studied experimentally and simulated using commercial CFD software(FLUENT 6.0).The experimental results show that the rotational classifier position and the ratio of the classifier opening area to the inlet area have significant impact on the separation efficiency of the dynamic cyclone.The separation efficiency can be significantly improved as the classifier rotates at a speed beyond its natural swirling frequency.The RSM model was used to simulate the 3-D gas flow field,and the simulation predictions were validated by the experimental results measured by a five-hole pressure probe.The tangential velocity distribution in the dynamic cyclone body can be divided into three zones:inlet,separation,and bottom.Each zone has its own tangential velocity distribution curve.The effects of operating conditions and geometric parameters of the classifier on the tangential velocity distribution were also studied.
机译:对旋风分离器的分离效率和流场进行了实验研究,并用商用CFD软件(FLUENT 6.0)进行了模拟。当分级器以超过其自然涡旋频率的速度旋转时,分离效率可得到显着提高。使用RSM模型模拟3-D气流场,并通过以下方法验证了模拟预测:用五孔压力探头测得的实验结果,动态旋风分离器体内的切向速度分布可分为入口,分离和底部三个区域,每个区域都有自己的切向速度分布曲线。工作条件的影响并研究了分类器的切向速度分布的几何参数。

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