化工学报 ›› 2012, Vol. 63 ›› Issue (2): 508-515.DOI: 10.3969/j.issn.0438-1157.2012.02.024

• 分离工程 • 上一篇    下一篇

可用于MVR蒸发系统的气液分离器改进结构分析

韩东,顾昂,岳晨,单华伟   

  1. 南京航空航天大学能源与动力学院,江苏 南京 210016
  • 收稿日期:2011-05-30 修回日期:2011-11-04 出版日期:2012-02-05 发布日期:2012-02-05
  • 通讯作者: 韩东

Improvement Analysis on Liquid-gas Separator for MVR Evaporation System

HAN Dong,GU Ang,YUE Chen,SHAN Huawei   

  1. College of Energy and Power Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016,Jiangsu,China
  • Received:2011-05-30 Revised:2011-11-04 Online:2012-02-05 Published:2012-02-05

摘要: 针对常规气液分离器对微小液滴分离效率低的不足,提出一种可用于MVR蒸发系统的气液分离器结构,并采用数值模拟结合实验验证的方法对其分离特性进行研究。首先,利用数值模拟的方法分析了气液分离器内部流场和压力场,确定了影响分离效果最明显的位置,然后提出了在该位置加装不同数量3/4圆环形挡板的分离器结构。其次,模拟研究了此种新结构的分离效率和压降等分离特性以及挡板数量变化的影响规律。最后,通过实验验证的方法分析了数值模拟结果的可靠性和新结构的分离效果。研究结果表明:圆柱型筒体是影响分离器分离特性的关键部位,在气液分离器圆柱形筒体内部增加3/4环形挡板,能够增加物料切向运动的有效长度,降低物料的径向速度,从而显著提高微小液滴的分离效率,气液分离器整体压降却增加不多;而且随着环形挡板数量的增加,该结构气液分离器的分离效率和压降均明显提高。在本文计算条件下,加装3/4圆环形挡板的气液分离器结构,可以将直径在3 μm以下的液滴分离效率提高15%,而压降仅增加了200Pa。综合气液分离器效率和压降影响,加装两个3/4圆环形挡板的气液分离器性能最佳。

关键词: 气液分离器, 数值模拟, 分离效率, 压力损失, 两相流

Abstract: Considering the low separating efficiency of conventional gas-liquid separator for small liquid drops, a new type of gas-liquid separator was proposed, which is available in a Mechanical Vapor Recompression (MVR) evaporation system, and its separation characterization was analyzed based on the research approach of a numerical simulation combined experiment verification in this study. Firstly, the numerical simulation method was employed to locate the most effective separation position through analyzing flow field and pressure distribution of the conventional gas-liquid separator, and the 3/4 circular baffle was installed there to construct a new type of gas-liquid separator. Secondly, separation characteristics of the proposed separator and influence rule of the number of 3/4 circular baffles were analyzed. Finally, the new separator structure was built and experimented to verify the simulation results and separation effect. The study results showed the separator with 3/4 circular baffle could improve the separation efficiency of small liquid drops significantly, with a little pressure loss. The circular body affected the separator characteristics significantly. With 3/4 circular baffle installed, the effective length of tangible movement could be increased and the radial velocity could be decreased, which plays a good role for increased separation efficiency with little pressure loss. Also, the separation efficiency and pressure loss are all increased with the number of 3/4 circular baffles. In this study, the separation efficiency of liquid drops with diameters less than 3 μm of the new separator structure could be increased by 15%, and pressure loss is only increased 200Pa .Combining the separation efficiency and pressure loss comprehensively, gas-liquid separators with two 3/4 circular baffles could achieve the most separation characteristics.

Key words: gas-liquid separator, numerical simulation, separation efficiency, pressure drop, twophase flow

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