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液-固旋液分离器的设计 被引量:1

Design of Liquid-solid Hydrocyclone
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摘要 文中对液-固旋液分离器的主要设计尺寸及各尺寸对分离性能的影响进行了总结,给出了各尺寸之间的比例关系。为达到最高的分离效率,推荐了最佳的尺寸比例关系。考察了总压降及总处理量对分离性能的影响,建议采用旋液分离器池进行实际的分离操作,且为完成旋液分离器的初步设计,提出了明确的设计步骤。 The paper summarizes the main sizes of liquid-solid hydrocyclone and concludes how the sizes affect separation performance, and presents the relationship between the sizes. For achieving the highest separation efficiency, the paper suggests optimum relationship between the sizes. The effects of total pressure drop and capacity on the separation performance is investigated, and the pool of hydrocyclones (parallel hydrocyclones) should be used for actual separation process. Some specific steps should be followed when primarily designing liquid-solid hydrocyclones.
作者 张国娟
出处 《机械工程师》 2012年第6期30-32,共3页 Mechanical Engineer
关键词 分离性能 尺寸比例关系 总压降 总处理量 旋液分离器池 设计步骤 separation performance relationship between the sizes total pressure drop total capacity pool ofhydrocyclones steps for designing
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参考文献6

  • 1BRADLEY D. The Hydrocyclone[M].New York:pergaman Press,1965.
  • 2DAY R W. The Hydrocyclone in Process and Pollution Control[J].Chemical Engineering Progress,1973,(69):67-72.
  • 3BRADLEY D. Flow Patterns in the Hydraulic Cyclone and Their Interpretation in Terms of Performance[J].Transactions of the Institution of Chemical Engineers,1959.34-44.
  • 4RIETEMA K. Cyclones in Industry[M].Amsterdam:Elsevier Pub.Co,1958.
  • 5KELSALL D F. A further Study of the Hydraulic Cyclone[J].Chemical Engineering Science,1953,(02):254-272.
  • 6RIETEMA K. Performance and Design of Hydrocyclones[J].Chemical Engineering Science,1961,(15):298-302.

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