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Effect of inlet particle arrangement on separating property of a cyclone separator

机译:入口颗粒排列​​对旋风分离器分离性能的影响

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Different arrangements of particles on the inlet section exert different effects on the separation property of a cyclone separator. Sorting classifier with different heights was connected in series with a conventional cyclone, positive rotation cyclone, and reverse rotation cyclone respectively, to investigate the effect of particle arrangement on the separation property and inner flow field. Results indicate that the implementation of a sorting classifier increases the pressure drop and energy consumption of a cyclone separator. The taller the sorting classifier, the larger the flow is. The energy consumption in positive rotation cyclone is closer to that in reverse rotation cyclone. Meanwhile, the tangential velocity in inner flow field is higher and the separating property is enhanced. The reverse rotation cyclone relieves the fishhook effect, whereas the positive rotation cyclone eliminates such effect. The reverse and positive rotation cyclones demonstrate an improved separating property for particles smaller and greater than 1 μm, respectively. Moreover, the reverse rotation cyclone demonstrates superior overall separation, but the positive rotation cyclone demonstrates a greater classification effect than the reverse rotation cyclone.
机译:入口部分上颗粒的不同排列对旋风分离器的分离性能产生不同的影响。将不同高度的分选分级机分别与常规旋风分离器,正旋旋风分离器和反向旋风分离器串联,以研究颗粒排列对分离性能和内部流场的影响。结果表明,分选器的实施增加了旋风分离器的压降和能耗。排序分类器越高,流量越大。正向旋风除尘器的能耗接近反向旋风除尘器的能耗。同时,内部流场中的切线速度更高,分离性能得到增强。反向旋风消除了鱼钩效应,而正旋风消除了这种效应。反向和正向旋风分离器分别对小于和大于1μm的颗粒表现出改善的分离性能。此外,反向旋风分离器显示出优异的整体分离效果,但是正旋旋流分离器显示出比反向旋流分离器更大的分类效果。

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