入口通道数对气-颗粒旋风分离器流态、性能和侵蚀影响的数值研究

S. M. Vahedi, F. Parvaz, M. Kamali, Hasti Jafari Jebeli
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引用次数: 8

摘要

数值研究了增加额外进口通道对楼梯式旋风分离器运行的影响。采用雷诺应力模型(RSM)和欧拉-拉格朗日方法研究了复杂湍流流动和旋风分离器的性能。考察了单向耦合和双向耦合模型对旋流器效率和截止粒径计算的影响。结果表明,通道数的增加增加了切向速度,扩大了朗肯涡区。此外,在四入口旋风中,流动方向的变化与单入口和双入口旋风不同,它的行为类似于射流。结果表明,四入口旋流器的收集效率和截止粒径分别比单入口旋流器高10.78%和低35%。因此,由于高的切向和轴向速度,四入口旋风器的性能在三种所研究的配置中是最高的。具有更多入口的旋风具有更对称的流型。因此,四入口气旋的侵蚀通量最低。结果表明,单向耦合和双向耦合模型在旋风分离器性能上略有不同。
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Numerical Investigation of the Impact of Inlet Channel Numbers on the Flow Pattern, Performance, and Erosion of Gas-particle Cyclone
The effect of adding extra inlet channels on the operation of the Stairmand Cyclone has been investigated numerically. The Reynolds stress model (RSM) and Eulerian-Lagrangian method were used to investigate the complex turbulent flow and cyclone performance. The impacts of one-way coupling and two-way coupling models on the cyclone efficiency and the calculation of cut-off size diameter were examined. The results showed that a rise in channel number increases the tangential velocity and extends the Rankine vortex region. Moreover, in the four-inlet cyclone, the direction of flow changes unlike the one-inlet and two-inlet cyclones, and it behaves like a jet flow. According to the results, the collection efficiency and cut-off size diameter of the four-inlet cyclone are respectively about 10.78% higher and 35% lower than those of one-inlet configuration. Therefore, the performance of four-inlet cyclone is the highest among the three investigated configurations due to high tangential and axial velocities. A cyclone with more inlets has a more symmetrical flow pattern. Consequently, the four-inlet cyclone has the lowest flux of erosion among the others. The results of cyclone performance reveal a slight difference between one-way coupling and two-way coupling models.
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