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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Effects of the inlet section angle on the separation performance of a cyclone
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Effects of the inlet section angle on the separation performance of a cyclone

机译:入口截面角度对旋风分离器性能的影响

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The improvement of the inlet geometry of the cyclone is conducted in this study based on the previous works, i.e., the cyclone inlet has a certain inlet section angle. The gas flow fields in cyclones for the different inlet section angles were calculated by means of computational fluid dynamics (CFD) technology, and the inner flow field geometry of these cyclones were compared. Additionally, the pressure drops and separation efficiencies of these cyclones were studied by experiments. The results indicate that the inlet section angle can make the flow filed in the cyclone be propitious for particle separation, and improve the separation performance effectively. At the same inlet velocity, with increasing the inlet section angle, both total separation efficiencies and grade efficiencies increase, and the pressure drops reduce greatly. Combining the change tendency of the pressure drop and the separation efficiency, a conclusion can be obtained, i.e., the optimal angle should be 45° for the range of the inlet section angle in this study.
机译:在这项研究的基础上,根据先前的工作对旋风分离器的入口几何形状进行了改进,即旋风分离器的入口具有一定的入口截面角。利用计算流体力学(CFD)技术计算了旋流器中不同进口截面角度的气流场,并比较了旋流器的内部流场几何形状。另外,通过实验研究了这些旋风分离器的压降和分离效率。结果表明,入口截面角可使旋风分离器内的流动有利于颗粒分离,有效地提高了分离性能。在相同的入口速度下,随着入口截面角的增加,总分离效率和坡度效率均增加,并且压降大大降低。结合压降和分离效率的变化趋势,可以得出一个结论,即,在本研究中,对于进口截面角度的范围,最佳角度应为45°。

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