Correlations of Trajectory and Break-up Point for Liquid Jet Injected into Low Speed Cross-flow

저속 횡단유동장에 분사된 액체제트의 분무궤적 및 분열점에 대한 상관관계식

  • 김종현 (동양공업전문대학 기계설계과) ;
  • 이봉수 (한국기기유화시험연구원 유체기계평가팀) ;
  • 구자예 (한국항공대학교 항공우주 및 기계공학부)
  • Published : 2008.06.30

Abstract

The correlations for cross-flow have not been well established, because of the complexity of breakup and atomization mechanism. A study was performed to investigate the characteristics of spray behaviour of liquid jet in the bag breakup regime injected into low-speed cross-flow with the pressure single-hole nozzle. The shadow-graphy method was used for the cross-flow jet visualization. The experimental variables of liquid jet were nozzle diameter $(0.3mm{\sim}1.0mm)$, injection pressure $(50kPa{\sim}150kPa)$, and the velocity of cross-flow $(27m/s{\sim}42m/s)$. The highest penetration trajectories of liquid jet are governed by the momentum ratio $({\rho}_{\iota}U_{\iota}^2/{\rho}_aU_{cross}^2)$ rather than the Weber number and the new empirical equations of the highest penetration trajectory and breakup point at low-speed corss-flow are established.

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