结构与工况参数对气液同轴离心式喷嘴自激振荡特性影响的试验研究

Experimental study on the influence of structural and operating condition parameters on self-pulsation characteristics of gas-liquid swirl coaxial injectors

  • 摘要: 为明晰气液同轴离心式喷嘴自激振荡产生机理,理清自激振荡影响规律,本文通过常压雾化试验结合背景光成像方法,捕捉到了喷嘴自激振荡现象,获得了不同工况和结构参数下的喷雾图像,系统研究了气液比、缩进长度和气体环缝宽度对喷嘴自激振荡特性的影响。结果表明:自激振荡频率随气液比、缩进长度的增大无显著变化,随气体环缝宽度的增加而增大;自激振荡强度随气液比的增大有所增强,随缩进长度、气体环缝宽度的增加而减弱。喷嘴缩进能激发自激振荡,且存在一缩进长度使自激振荡强度最强;增加气体环缝宽度能抑制自激振荡;增大气液比则对自激振荡产生有促进作用。自激振荡能增大喷雾锥角,自激振荡越强,喷雾锥角增大越明显。

     

    Abstract: To clarify the generation mechanism and influencing laws of self-pulsation in gas-liquid swirl coaxial injectors, this paper captured the self-pulsation phenomenon using atmospheric atomization experiments combined with backlight imaging. Spray images under different operating and structural parameters were obtained. The effects of gas-liquid ratio (GLR), recess length, and gas annulus width on the self-pulsation characteristics were systematically investigated. The results show that the self-pulsation frequency does not change significantly with increasing GLR or recess length, but increases with increasing gas annulus width. The intensity of self-pulsation increases with higher GLR, but decreases with larger recess length and gas annulus width. Injector recess can trigger self-pulsation, and there exists an optimal recess length that maximizes the self-pulsation intensity. Increasing the gas annulus width suppresses self-pulsation, while increasing GLR promotes it. Self-pulsation increases the spray cone angle, and a stronger self-pulsation leads to a more pronounced increase in the spray cone angle.

     

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