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Numerical simulation of gas-liquid two-phase flow in recycling cyclone separator with different structure

机译:不同结构循环旋风分离器内气液两相流动的数值模拟

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A numerical study of the droplet motion in the recycling cyclone separator is presented in this paper. The Reynolds stress model (RSM) for the single-phase and the coupling discrete random walk model are adopted for the two-phase. The pressure drop, separation efficiency velocity and turbulence parameters of the gas flow are described to study the effects of different structures on the separation performance of cyclones. The results show that recycling line can improve the efficiency of the recycling cyclone separator and reduce the pressure drop. The gap width and the size of baffle plate affect the separation property of the recycling cyclone. The rectangular-shaped intake behaves better than the cylinder-shaped one. However, the skirted baffle has little effect on the recycling cyclone separator. All the structural features make for a better understanding of the separation mechanism in the recycling cyclone separator. The numerical results are compared with the experimental data and good agreement can be observed.
机译:本文对循环旋风分离器中液滴运动进行了数值研究。两相采用单相雷诺应力模型(RSM),耦合离散随机游走模型。描述了气流的压降,分离效率速度和湍流参数,以研究不同结构对旋风分离器性能的影响。结果表明,回收线可以提高回收旋风分离器的效率,减少压降。间隙的宽度和挡板的尺寸影响回收旋风分离器的分离性能。矩形进气口的性能优于圆柱形进气口。但是,裙状挡板对循环旋风分离器的影响很小。所有的结构特征都可以更好地理解循环旋风分离器中的分离机理。将数值结果与实验数据进行比较,可以观察到很好的一致性。

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