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Study on the breakup lengths of free round liquid jets
作者姓名:ZHU Ying  WAN Yun-xi  HUANG Yong  PENG Xin-ke
作者单位:School of Jet Propulsion,Beijing University of Aeronauticsand Astronautics,Beijing 100083,China
摘    要:IntroductionBreakup and atomization of roundliquidjetshad been widely used in internal combustion en-gines,gas turbines,and liquid rocket engines.Recently,with the development of scramjet en-gines and the deepening of fuel atomization re-search,it attract…

关 键 词:breakup  length    high  speed  camera    surface  wave    growth  rate    dispersion  equation
文章编号:1000-8055(2007)08-1258-06
收稿时间:2006/10/16 0:00:00
修稿时间:2006年10月16

Study on the breakup lengths of free round liquid jets
ZHU Ying,WAN Yun-xi,HUANG Yong,PENG Xin-ke.Study on the breakup lengths of free round liquid jets[J].Journal of Aerospace Power,2007,22(8):1258-1263.
Authors:ZHU Ying  WAN Yun-xi  HUANG Yong and PENG Xin-ke
Institution:School of Jet Propulsion, Beijing University of Aeronautics and Astronautics, Beijing 100083, China
Abstract:An experiment was conducted to measure the breakup lengths of water jets with a high-speed video camera for Weber numbers from 0 to about 1.1 × 103. The initial jet diameters are changed from 0.3mm to 1.0mm. The results indicate that at low jet velocity the breakup lengths of the jets are increased linearly from 0 to a maximum value. At the Weber number about 20 the breakup length of the jet reaches its maximum value for different initial jet diameter. A computation based on the dispersion equation is conducted to study the relationship between the growth rate of the jet surface wave and the maximum breakup length. The computations show that the maximum growth rate for the axisymmetric surface wave has a turning point at Weber number about 20, and that agrees well with the experiments.
Keywords:breakup length  high speed camera  surface wave  growth rate  dispersion equation  jets  liquid  round  free  breakup  experiments  show  axisymmetric  turning point  computation  based  dispersion equation  study  relationship  growth rate  surface wave  number  length  different  diameter
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