期刊文献+

基于临界分流理论的气液两相流均匀分配器 被引量:13

Equal distribution of gas-liquid two-phase flow based on critical flow theory
下载PDF
导出
摘要 提出了一种新型气液两相流分配器,主要由旋流叶片、整流器、分流喷嘴以及分配腔室组成。通过采用“流型调整”与“临界分流”控制相分离。为研究不同分流比下的分配特征,设计了2喷嘴和4喷嘴两种分配结构。建立了气液两相流数值模型,模拟了气液两相流在分配器内流动特性。在气液两相流实验环道上进行了测试,气相折算速度范围为5.0~25.0 m·s^-1,液相折算速度范围为0.012~0.14 m·s^-1,实验中出现的流型包括波浪流、段塞流以及环状流。结果表明,在临界分流条件下,气液相分流系数主要取决于与侧支管相连通的分流喷嘴数目与总喷嘴数目的比值,不受流型、气液流速等参数波动的影响。对于2喷嘴分配器分流系数接近理论值0.5,对于4喷嘴气液分流系数约为0.25。 A novel distributor consisting of a swirl vane, nozzles and fluid splitting rooms was proposed to distribute gas-liquid two-phase flow evenly. The swirl van was used to change upstream flow patterns into annular flow with uniform film thickness to make sure all the nozzles have same inlet condition and the nozzles were used to accelerate the gas-liquid mixture to achieve critical flow. In order to investigate the distributor behavior under different extraction ratios, a 2-nozzle and a 4-nozzle distributor were designed. A numerical model was developed to simulate the gas and liquid velocity vector distribution in the distributor. The simulation results showed that all the nozzles had similar flow behavior if their outlet pressures were equal. Experiments were conducted in an air-water two-phase flow loop, with the distributor horizontally installed. Superficial gas velocity varied from 5.0 m·s^-1 to 25.0 m·s^-1, liquid superficial velocity was in the range of 0.012-0.14 m·s^-1. The flow patterns observed during the tests included wavy flow, annular flow and slug flow. It was found that gas and liquid splitting ratio was determined by the number of the nozzles and was independent of flow patterns, gas and liquid superficial velocity and resistance characteristic of the downstream pipeline. The splitting ratios of the 2-nozzle and 4-nozzle distributors were 0.5 and 0.25 respectively.
出处 《化工学报》 EI CAS CSCD 北大核心 2014年第10期3798-3804,共7页 CIESC Journal
基金 国家自然科学基金项目(51006123) 中央高校基本科研业务费专项基金项目(14CX05028A)~~
关键词 气液两相流 分配 数值模拟 相分离 控制 临界流 gas-liquid flow distribution numerical simulation phase splitting control critical flow
  • 相关文献

参考文献20

  • 1Azzopardi B J. Phase separation at T junctions [J]. Multiph. Sci.Technol., 1999, 11 (4): 223-329. 被引量:1
  • 2He K, Wang S, Huang J. The effect of flow pattern on split of two-phase flow through a micro-T-junction [J]. Int. J. Heat MassTransfer, 2011, 54 (15/16): 3587-3593. 被引量:1
  • 3Zou Y, Hrnjak P S. Experiment and visualization on R134a upwardflow in the vertical header of microchannel heat exchanger and itseffect on distribution [J]. Int. J. Heat Mass Transfer, 2013, 62:124-134. 被引量:1
  • 4Kim N H, Lee E J, Byun H W. Improvement of two-phase refrigerantdistribution in a parallel flow minichannel heat exchanger usinginsertion devices [J]. Appl. Therm. Eng., 2013, 59 (1/2): 116-130. 被引量:1
  • 5Lalot S, Florent P, Lang S K, Bergles A E. Flow maldistribution inheat exchangers [J]. Appl. Therm. Eng., 1999, 19 (8): 847-863. 被引量:1
  • 6张炳东,刘丹,王栋.分相式气液两相流体等干度分配方法[J].西安交通大学学报,2010,44(5):106-110. 被引量:7
  • 7Doherty A P, Murphy A, Spedding P L. Fluid flow in an impactingsymmetrical tee junction (Ⅱ): Two-phase air/water flow [J]. Asia-Pac.J. Chem. Eng., 2009, 4: 424-431. 被引量:1
  • 8Dario E R, Tadrist L, Passos J C. Review on two-phase flowdistribution in parallel channels with macro and micro hydraulicdiameters: main results, analyses, trends [J]. Appl. Therm. Eng., 2013,59 (1/2): 316-335. 被引量:1
  • 9El-Shaboury A M F, Soliman H M, Sims G E. Two-phase flow in ahorizontal equal-sided impacting tee junction [J]. Int. J. MultiphaseFlow, 2007, 33:411-431. 被引量:1
  • 10Mohamed M A, Soliman H M, Sims G E. Experimental investigationof two-phase flow splitting in an equal-sided impacting tee junctionwith inclined outlets [J]. Exp. Therm. Fluid Sci., 2011, 35 (6):1193-1201. 被引量:1

二级参考文献42

共引文献43

同被引文献83

引证文献13

二级引证文献30

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部