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The effect of cyclone inlet dimensions on the flow pattern and performance

机译:旋风分离器入口尺寸对流型和性能的影响

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The effect of the cyclone inlet dimensions on the performance and flow field pattern has been investigated computationally using the Reynolds stress turbulence model (RSM) for five cyclone separators. The results show that, the maximum tangential velocity in the cyclone decreases with increasing the cyclone inlet dimensions. No acceleration occurs in the cyclone space (the maximum tangential velocity is nearly constant throughout the cyclone). Increasing the cyclone inlet dimensions decreases the pressure drop. The cyclone cut-off diameter increases with increasing cyclone inlet dimension (consequently, the cyclone overall efficiency decreases due to weakness of the vortex strength). The effect of changing the inlet width is more significant than the inlet height especially for the cut-off diameter. The optimum ratio of inlet width to inlet height b/a is from 0.5 to 0.7.
机译:使用雷诺应力湍流模型(RSM)对五个旋风分离器进行了旋风分离器入口尺寸对性能和流场模式的影响的计算研究。结果表明,旋风分离器的最大切向速度随着旋风分离器入口尺寸的增加而减小。在旋风分离器空间中没有发生加速度(最大切向速度在整个旋风分离器中几乎恒定)。增加旋风分离器的入口尺寸可减小压降。旋风分离器的直径随旋风分离器入口尺寸的增加而增加(因此,由于旋涡强度的减弱,旋风分离器的整体效率会降低)。改变进口宽度的影响比进口高度更重要,特别是对于截止直径。入口宽度与入口高度b / a的最佳比率为0.5至0.7。

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