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Numerical investigation of hydrocyclone inlet configurations for improving separation performance

  • Dianyu E
  • , Guangtai Xu
  • , Haihan Fan
  • , Jiaxin Cui
  • , Cong Tan
  • , Yuhao Zhang
  • , Ruiping Zou
  • , Shibo Kuang
  • , Aibing Yu
  • Jiangxi University of Science and Technology
  • Alber Particle Science and Technology Research Institute
  • Monash University

科研成果: 期刊稿件文章同行评审

35 引用 (Scopus)

摘要

Optimizing hydrocyclone inlet design is regarded as an effective strategy to mitigate the adverse effect of particle misplacement and improves separation efficiency. This work proposes innovative hydrocyclone designs based on spiral inlet with a specific spiral angle and tangential inlet with a specific curvature radius. The new designs are evaluated and compared with a standard design using a validated two–fluid model. The separation performance, flow characteristics and volume fraction distribution are considered in the evaluation. An optimum spiral inlet design is identified, with an inlet spiral angle of 90° under the current conditions. This inlet design evidently improves the tangential velocity, strengthens the stability of the air core and reduces short-circuit flows. Additionally, the new inlets help improve the volume fraction of coarse particles in the region near the spigot, mitigating the misplacement of coarse and fine particles. This study offers a new perspective for improving hydrocyclone flows and performance.

源语言英语
文章编号119384
期刊Powder Technology
434
DOI
出版状态已出版 - 1 2月 2024

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