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Numerical simulation of flow focusing pattern and morphological changes in two-phase flow inside nozzle

机译:喷嘴内两相流的流动聚焦模式和形态变化的数值模拟

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摘要

The flow focusing nozzle is a new type of nozzle that performs effective atomization of the discrete phase by means of high-speed motion of the continuous phase.The flow pattern and its morphological changes have a significant effect on the atomization,but the influence of different parameters on the morphological change of the flow pattern remains unclear.The flow focusing pattern and morphological changes in the two-phase flow inside the nozzle were simulated numerically,based on the volume of fluid method.The results demonstrate that the ratio of the nozzle-to-capillary distance and capillary diameter,the gas-liquid velocity ratio,and capillary diameter have significant effects on the flow pattern.When the ratio of the nozzle-to-capillary distance H and capillary diameter D increases,or the capillary diameter D increases,the flow pattern tends to transform into a laminar form;however,when the gas-liquid velocity ratio V increases,the flow pattern tends to transform into a turbulence form.Furthermore,we define the cone-shaped expansion rate,cone-shaped focusing rate,and cone angle in order to study the morphological changes in the cone shape inside the nozzle.The results indicate that the morphological change of the cone shape and flow pattern transformation is interrelated.When the cone shape tends to be unstable,the flow pattern changes towards flow blurring,whereas,a stable cone indicates that the flow tends to exhibit a droplet pattern.
机译:流动聚焦喷嘴是一种通过连续相的高速运动对离散相进行有效雾化的新型喷嘴。流动方式及其形态变化对雾化有很大影响,但是影响不同基于流体积的方法,数值模拟了喷嘴内部两相流的流动聚焦方式和形态变化。结果表明,喷嘴的比例-毛细管间距离和毛细管直径,气液流速比和毛细管直径对流型都有显着影响。当喷嘴与毛细管间的距离H与毛细管直径D之比增大时,或毛细管直径D增大时时,流态趋于转变成层流形式;但是,当气液速比V增加时,流态趋于转变成湍流此外,我们定义了圆锥形的膨胀率,圆锥形的聚焦率和圆锥角,以研究喷嘴内部圆锥形的形态变化。结果表明,圆锥形和流动的形态变化模式变化是相互关联的。当圆锥形状趋于不稳定时,流型向流模糊变化,而稳定的圆锥型表明流倾向于呈现液滴型。

著录项

  • 来源
    《中国化学工程学报(英文版)》 |2019年第1期|63-71|共9页
  • 作者单位

    College of Mechanical and Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China;

    College of Mechanical and Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China;

    College of Mechanical and Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China;

    College of Mechanical and Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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