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Experimental and Numerical Investigations of a Dual-Stage Cyclone Separator

机译:实验和数值研究双阶段的旋风分离器

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摘要

Cyclone separators can be utilized in parallel to increase particle collection efficiency. However, this leads to a maldistribution problem that causes separation performance deterioration. To improve the flow distribution, a dual-stage multicyclone separator (DSCS) was designed, containing a tangential-inlet circle pathway cyclone array, an axial-inlet radiation pathway cyclone array, and a cylindrical outer chamber. Experimental and computational fluid dynamics results revealed the gas-particle flow distribution through multicyclone arrays. Effects of flow distribution on particle deposition were investigated experimentally. Particle trajectories inside the cyclone separators were also observed. The multicyclone array proved to generate a uniform inlet velocity distribution. The proposed cyclone separator can be considered as an option to accomplish dilute gas-particle separation.
机译:旋风分离器可以利用并行增加粒子收集效率。这导致一个分布不均的问题导致分离性能恶化。改善流分布、双阶段多管式旋流分离器(DSCS)设计,包含一个切向入口循环途径气旋数组,一个axial-inlet辐射途径气旋数组和一个圆柱形外室。实验和计算流体动力学结果显示特点流通过多管式旋流分布数组。流分布的粒子沉积实验调查。旋风分离器内的轨迹也观察到。生成一个统一的入口速度分布。拟议的旋风分离器可以考虑作为一个选项来完成稀的特点分离。

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