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Optimal particle acceleration in a jet mill nozzle

机译:气流粉碎机喷嘴中的最佳颗粒加速

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The optimal profile of the accelerating nozzle of a jet mill is computed to provide a maximum particle velocity at the nozzle outlet. To describe one-dimensional monodispersed flow in the nozzle, the well-known set of differential equations is employed. The influence of both particle size and solids/gas mass flow rate on the optimal nozzle profile is studied. Computations show that an employment of optimized nozzles is beneficial for relatively low solids loading. An increase in particle velocities at the optimized nozzle outlet reaches 25 percent compared to those in a conical nozzle if the solids/gas mass flow ratio equals unity.
机译:计算喷射磨的加速喷嘴的最佳轮廓,以在喷嘴出口处提供最大颗粒速度。为了描述喷嘴中的一维单分散流,采用了一组众所周知的微分方程。研究了粒径和固体/气体质量流速对最佳喷嘴轮廓的影响。计算表明,采用优化的喷嘴有利于降低固体含量。如果固体/气体质量流量比等于1,则与圆锥形喷嘴相比,优化喷嘴出口处的粒子速度提高了25%。

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