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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Experimental investigations on atomization characteristics of dual-orifice atomizers part Ⅱ: Optimization method application
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Experimental investigations on atomization characteristics of dual-orifice atomizers part Ⅱ: Optimization method application

机译:双孔雾化器雾化特性的实验研究Ⅱ:优化方法应用

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摘要

In this paper, influences of structure parameters on mass flow and atomization characteristics (spray cone angle, SMD , liquid film fusion and separation) of dual-orifice atomizers were investigated using Fraunhofer diffraction optical instrument and high-speed shadowgraph technique. The main influential structure parameters are obtained by structural parameter sensitivity analysis. Liquid film fusion and separation is an important atomization characteristic lacking of in-depth research. Results of liquid film fusion and separation illustrate that three patterns (separation-fusion-secondary separation) of main stage liquid film and pilot stage liquid film appear with the increase of Δ P . Liquid film fusion makes SMD larger, and there is a delay in liquid film separation when reduce Δ P after liquid film fusion. In addition, mass flow and spray cone angle are key factors which affect liquid film fusion pressure, liquid film secondary separation pressure and distance between two liquid films. The smaller the pilot stage mass flow is, the larger the effect of the main stage on pilot stage spray cone angle will be. Results in this paper could be used to the design and optimization of new dual-orifice atomizers.
机译:本文采用FRAUnhofer衍射光学仪表研究了双孔雾化器的质量流量和雾化特性对质量流量和雾化特性(喷雾锥角,SMD,液膜融合和分离的影响。主要有影响的结构参数通过结构参数灵敏度分析获得。液体膜融合和分离是缺乏深入研究的重要雾化特性。液体膜熔融和分离的结果说明了主级液膜和先导阶段液膜的三种图案(分离融合二级分离)随着δp的增加而出现。液体膜融合使得SMD较大,并且当液体膜融合后减少δP时存在液体膜分离延迟。另外,质量流量和喷雾锥角是影响液体膜熔合压力的关键因子,液膜二次分子分离压力和两个液体膜之间的距离。导频阶段质量流量越小,主级对导频阶段喷雾锥角的效果越大。本文的结果可用于设计和优化新的双孔雾化器。

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    Key Laboratory of Light-duty Gas-turbine Institute of Engineering Thermophysics Chinese Academy of Sciences|University of Chinese Academy of Sciences|Innovation Academy for Light-duty Gas Turbine Chinese Academy of Sciences;

    Key Laboratory of Light-duty Gas-turbine Institute of Engineering Thermophysics Chinese Academy of Sciences|University of Chinese Academy of Sciences|Innovation Academy for Light-duty Gas Turbine Chinese Academy of Sciences;

    Key Laboratory of Light-duty Gas-turbine Institute of Engineering Thermophysics Chinese Academy of Sciences|University of Chinese Academy of Sciences|Innovation Academy for Light-duty Gas Turbine Chinese Academy of Sciences;

    Key Laboratory of Light-duty Gas-turbine Institute of Engineering Thermophysics Chinese Academy of Sciences|University of Chinese Academy of Sciences|Innovation Academy for Light-duty Gas Turbine Chinese Academy of Sciences;

    Key Laboratory of Light-duty Gas-turbine Institute of Engineering Thermophysics Chinese Academy of Sciences|University of Chinese Academy of Sciences|Innovation Academy for Light-duty Gas Turbine Chinese Academy of Sciences;

    Key Laboratory of Light-duty Gas-turbine Institute of Engineering Thermophysics Chinese Academy of Sciences|University of Chinese Academy of Sciences|Innovation Academy for Light-duty Gas Turbine Chinese Academy of Sciences;

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  • 正文语种 eng
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  • 关键词

    Dual-orifice atomizer; mass flow; spray cone angle; SMD; liquid film fusion and separation;

    机译:双孔雾化器;质量流动;喷雾锥角;SMD;液体膜融合和分离;

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