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Numerical study of particle deposition and scaling in dust exhaust of cyclone separator

机译:旋风分离器粉尘排气中粒子沉积和缩放的数值研究

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The solid particles accumulation in the dust exhaust cone area of the cyclone separator can cause the wall wear. This undoubtedly prevents the flue gas turbine from long period and safe operation. So it is important to study the mechanism how the particles deposited and scale on dust exhaust cone area of the cyclone separator. Numerical simulations of gas-solid flow field have been carried out in a single tube in the third cyclone separator. The three-dimensionally coupled computational fluid dynamic (CFD) technology and the modified Discrete Phase Model (DPM) are adopted to model the gas-solid two-phase flow. The results show that with the increase of the operating temperature and processing capacity, the particle sticking possibility near the cone area will rise. The sticking rates will decrease when the particle diameter becomes bigger.
机译:旋风分离器的除尘锥区域中的固体颗粒积聚可导致壁磨损。这无疑可以防止烟气涡轮机长期和安全操作。因此,重要的是研究如何沉积的颗粒和在旋风分离器分离器的灰尘排气锥区域上沉积和缩小的机制。在第三旋风分离器中的单管中进行了气固流场的数值模拟。采用三维耦合的计算流体动态(CFD)技术和改进的分立相位模型(DPM)来模拟气体固体两相流。结果表明,随着工作温度和加工能力的增加,锥形区域附近的颗粒将升高。当粒径变大时,粘性率会降低。

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