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Numerical investigation of the effect of helix angle and leaf margin on the flow pattern and the performance of the axial flow cyclone separator

机译:螺旋角和叶片边缘对轴流式旋风分离器流型和性能影响的数值研究

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摘要

A two-stage turbulence model based on the RNG k-e model combined with the Reynolds stress model is developed in this paper to analyze the gas flow in an axial flow cyclone sep arator. Five representative simulation cases are obtained by changing the helix angle and leaf margins of the cyclone. The pressure field and velocity field of the five cases are simulated, and then the effects of helix angle and leaf margins on the internal flow field of the cyclone are analyzed. When the continuum fluid (air) flow is relatively convergent, the discrete particle phase is added into the continuous phase and the gas-solid two-phase flow is simulated. One-way coupling method is used to solve the two-phase flow and a stochastic trajectory model is implemented for simulation of the particle phase. Finally, the pressure drop and separation efficiency of one case are measured and compare quantitatively well with the numerical results, which validates the reliability and accuracy of the simulation method based on the two-stage turbulence model.
机译:本文建立了一个基于RNG k-e模型和雷诺应力模型的两阶段湍流模型,以分析轴流旋风分离器中的气流。通过改变旋风分离器的螺旋角和叶片边缘可获得五个典型的模拟情况。模拟了这5种情况下的压力场和速度场,然后分析了螺旋角和叶片边缘对旋风分离器内部流场的影响。当连续流体(空气)流相对收敛时,将离散颗粒相添加到连续相中,并模拟了气固两相流。采用单向耦合方法求解两相流,并建立了一个随机轨迹模型来模拟粒子相。最后,测量了一种情况下的压降和分离效率,并将其与数值结果进行了定量比较,从而验证了基于两级湍流模型的模拟方法的可靠性和准确性。

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