引用本文
  • 景国辉,闫萍,谌祖迪.船用柴油机高压喷嘴空穴流动的瞬态数值分析[J].柴油机,2014,36(5):7-12.    [点击复制]
  •    [点击复制]
【打印本页】 【在线阅读全文】 查看/发表评论下载PDF阅读器关闭

←前一篇|后一篇→

过刊浏览    高级检索

本文已被:浏览 694次   下载 0 本文二维码信息
码上扫一扫!
船用柴油机高压喷嘴空穴流动的瞬态数值分析
景国辉,闫萍,谌祖迪
0
海军驻七一一研究所军事代表室,上海201108;七一一研究所,上海201108
摘要:利用CFD软件对某型船用柴油机高压喷嘴内部的瞬态流动进行了数值研究,计算得到了不同喷孔参数和不同共轨压力下喷嘴内部的液相速度、压力、湍动能以及气相体积分数(空穴)的分布情况。结果表明,在相同轨压下小孔径喷孔可以加强液柱表面的初始扰动水平,增强液柱的初次破碎能力,有利于燃油雾化;高的共轨压力加大了气液两相间的相对速度,有助液柱的初次破碎。
关键词:  船用柴油机  喷嘴  瞬态流动  空穴
Numerical Analysis of Cavitation Transient Flow in Injection Nozzlewith High Pressure of Marine Diesel Engine
Jing Guohui,Yan Ping,Shen Zudi
Naval Deputy Office of Shanghai Marine Diesel Engine Research Institute, Shanghai 201108
Abstract:In order to study the high-pressure common-rail marine diesel engine transient flow and cavitations inside the nozzle, the injector nozzle transient flow of a certain type of marine diesel engines have been calculated by using CFD software. The liquid velocity, pressure, turbulent kinetic, and the gas volume fractions inside injection nozzles with different common rail pressures and different diameters of nozzles were calculated. Analysis results show that the small diameter of nozzle hole can increase the initial disturbance level of the liquid core surface, and increase primary breakup disintegration, and the small diameter of nozzle hole can improve fuel atomization. The higher common-rail pressure can increase the relative speed of gas/liquid two-phase, and is helpful to improve the primary breakup of liquid core.
Key words:  marine diesel engine  nozzle  transient flow  cavitation〖FL