期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
高频燃烧不稳定性单喷注器燃烧室模拟实验的研究 被引量:7
1
作者 张蒙正 张志涛 +1 位作者 李鳌 汪亮 《实验技术与管理》 CAS 2008年第3期28-32,共5页
高频燃烧不稳定性单喷注器燃烧室常压燃烧的模拟实验依据相似理论在大气环境下进行。模拟燃烧室采用与实际燃烧室有相同声学频率的模拟件,喷注器采用实际尺寸喷注器,实验介质为高温富氧空气和蒸气煤油。Ⅱ2=(P。/PF)^0.5(QVo/qvf... 高频燃烧不稳定性单喷注器燃烧室常压燃烧的模拟实验依据相似理论在大气环境下进行。模拟燃烧室采用与实际燃烧室有相同声学频率的模拟件,喷注器采用实际尺寸喷注器,实验介质为高温富氧空气和蒸气煤油。Ⅱ2=(P。/PF)^0.5(QVo/qvf)作为确定性相似准则,Ⅱ1=v/(Lf)为被确定性相似准则。改变富氧空气流量,调节燃烧室声学振荡和燃烧脉动的相位关系,激励起燃烧室高频不稳定性燃烧。用同轴湍流射流混合流场的经验公式估算燃烧区的特征长度,通过相似准则和燃烧室热力学参数将实验结果换算到实际发动机工况。整套模拟实验系统包括煤油、空气和氧气供应系统,流量控制和测量系统,空气甲烷燃烧器,富氧空气和煤油换热器,模拟燃烧室和喷注器,实验参数采集和处理系统,冷却水供应及控制系统等。发动机实验表明,模拟实验系统和方法是可行的。 展开更多
关键词 高频燃烧不稳定性 单喷注器 燃烧室 模拟实验
下载PDF
Numerical study on the morphology of a liquid-liquid pintle injector element primary breakup spray 被引量:8
2
作者 Rui ZHOU Chi-bing SHEN Xuan JIN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第8期684-694,共11页
Primary breakup in a liquid-liquid pintle injector element at different radial jet velocities is investigated to elucidate the impingement morphology,the formation of primary breakup spray half cone angle,the pressure... Primary breakup in a liquid-liquid pintle injector element at different radial jet velocities is investigated to elucidate the impingement morphology,the formation of primary breakup spray half cone angle,the pressure distribution,the liquid diameter distribution,and the liquid velocity distribution.With a sufficient mesh resolution,the liquid morphology can be captured in a physically sound way.A mushroom tip is triggered by a larger radial jet velocity and breakup happens at the tip edge first.Different kinds of ligament breakup patterns due to aerodynamic force and surface tension are captured on the axial sheet.A high pressure core is spotted at the impinging point region.A larger radial jet velocity can feed more disturbances into the impinging point and the axial sheet,generate stronger vortices to promote the breakup process at a longer distance,and form a larger spray half cone angle.Because of the re-collision phenomenon the axial sheet diameter does not decrease monotonically.The inner rim on the axial sheet shows a larger diameter magnitude and a lower velocity magnitude due to surface tension.This paper is expected to provide a reference for the optimum design of a liquid-liquid pintle injector. 展开更多
关键词 Pintle injector element Liquid-liquid impingement Primary breakup Volume of fluid-to-discrete phase model(VOF-to-DPM)simulation Adaptive mesh refinement(AMR)method
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部