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自诱导漩涡收油器的结构参数优选与除油效果研究

张芮菡 姜乐文 王越 郝宗睿

山东科学2024,Vol.37Issue(6):12-21,10.
山东科学2024,Vol.37Issue(6):12-21,10.DOI:10.3976/j.issn.1002-4026.20240045

自诱导漩涡收油器的结构参数优选与除油效果研究

Optimization of structural parameters and oil removal effect of a self-induced vortex oil collector

张芮菡 1姜乐文 1王越 1郝宗睿1

作者信息

  • 1. 齐鲁工业大学(山东省科学院)山东省科学院海洋仪器仪表研究所,山东 青岛 266100
  • 折叠

摘要

Abstract

To achieve the best separation effect and oil phase collection efficiency,a self-induced vortex oil collector was designed to collect residual oil from the turbulent sea.The inlet flow angle and suction pipe insertion depth of the device were adjusted and optimized via numerical simulation calculations.By comparing the volume of oil phase remaining inside the device in the same operation time,we concluded that at an inlet flow angle of 20° and a suction pipe insertion depth of h/3,the device could maintain a high oil phase separation efficiency,suppress oil-water mixing,and reduce oil-water interface diffusion and impurities.After determining the optimal structure,we analyzed the oil removal effect of the device in different water surface environments by changing its inlet flow velocity.The higher the inlet flow velocity,the higher the performance of the device for collecting the oil phase and better its oil removal effect.In addition,the entire oil collection process occurs inside the device without being affected by the external environment,suggesting that the device can collect oil from complex water surface environments.Moreover,the main body of the device has no moving parts,hence,it relies solely on the baffle to guide the swirl for collecting the oil phase.

关键词

油相分离/诱导漩涡/参数优选/数值模拟/油相分布

Key words

oil separation/induced vortex/parameter optimization/numerical simulation/oil phase distribution

分类

机械工程

引用本文复制引用

张芮菡,姜乐文,王越,郝宗睿..自诱导漩涡收油器的结构参数优选与除油效果研究[J].山东科学,2024,37(6):12-21,10.

基金项目

国家重点研发计划项目(2016YFC1402306) (2016YFC1402306)

山东省重点研发计划项目(2021CXGC010705) (2021CXGC010705)

青岛市关键技术攻关及产业化示范类项目(22-3-3-hygg-13-hy) (22-3-3-hygg-13-hy)

山东科学

OACSTPCD

1002-4026

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