化工学报

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筒体结构对轴流式旋风分离器的性能影响

卢非赣(), 司道润, 闫子涵, 卢春喜()   

  1. 中国石油大学(北京)重质油全国重点实验室,北京 102249
  • 收稿日期:2025-08-12 修回日期:2025-09-02 出版日期:2025-11-25
  • 通讯作者: 卢春喜
  • 作者简介:卢非赣(2000—),男,硕士研究生,2023210551@student.cup.edu.cn
  • 基金资助:
    国家自然科学基金委创新群体项目(22021004)

Effects of cylindrical structure on the performance of axial cyclone separators

Feigan LU(), Daorun SI, Zihan YAN, Chunxi LU()   

  1. State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China
  • Received:2025-08-12 Revised:2025-09-02 Online:2025-11-25
  • Contact: Chunxi LU

摘要:

为明确筒体结构对轴流式旋风分离器性能的影响规律,设计并搭建了大型冷模实验平台,以筒锥型(V-Cyclone-VC型)和直筒型(H-Cyclone-HC型)两种典型结构为研究对象,通过实验测量,分析了不同筒体结构下的压降特性、分离效率及内部流场特征。结果表明:在相同工况下,VC型旋分的分离效率整体高于HC型旋分,但其系统压降明显增加;两种结构的旋分在压降约为5.8 kPa时性能趋于一致,此压降临界点可作为实际工业应用的性能选择依据;流场分析显示,VC型旋分在分离空间内切向速度更高、轴向回流抽吸作用更强,利于颗粒向器壁迁移,降低颗粒逃逸风险;HC型旋分虽在分离效率方面略逊一筹,但内部流场均匀性更优,能耗更低。综合而言,VC型旋分适用于分离效率需求较高、能耗敏感度低的场景,而HC型旋分适用于对能耗控制要求较高、分离效率中等的工况。本研究为轴流式旋风分离器的结构设计与工业应用提供了重要的理论参考。

关键词: 离心分离, 两相流, 筒体结构, 分离性能, 流场分析

Abstract:

To investigate the effects of cylindrical structures on the performance of axial cyclone separators, a large-scale cold-model experimental platform was designed. Two typical structural forms, namely the conical-cylinder cyclone (V-Cyclone, VC) and the straight-cylinder cyclone (H-Cyclone, HC), were selected as research subjects. Based on experimental measurements, the study analyzed the pressure drop characteristics, separation efficiency, and internal flow field features of both designs under various operating conditions. The results show that, under identical operating conditions, the VC generally achieves higher separation efficiency than the HC, but at a substantially larger system pressure drop. The performance of the two designs converges around a critical pressure drop of approximately 5.8 kPa, which may serve as a practical reference for industrial selection. The flow-field analysis shows that the VC develops higher tangential velocity and stronger axial recirculation within the separation space, promoting particle migration toward the wall and lowering the risk of particle escape. Although the HC delivers slightly lower separation efficiency, it demonstrates better internal flow uniformity with lower energy consumption. In summary, the VC is preferable where maximum separation efficiency is prioritized and energy use is less constrained, whereas the HC suits applications emphasizing lower energy consumption with moderate separation efficiency. The study provides valuable theoretical guidance for the structural design and industrial application of axial cyclone separators.

Key words: centrifugation, two-phase flow, cylindrical structure, separation performance, flow field analysis

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