Measuring air core characteristics of a pressure-swirl atomizer via a transparent acrylic nozzle at various Reynolds numbers

  • Lee, E.J.; 
  • Oh, S.Y.; 
  • Kim, H.Y.; 
  • James, S.C.; 
  • Yoon, S.S.
Citations

SCOPUS

93

초록

Because of thermal fluid-property dependence, atomization stability (or flow regime) can change even at fixed operating conditions when subject to temperature change. Particularly at low temperatures, fuel's high viscosity can prevent a pressure-swirl (or simplex) atomizer from sustaining a centrifugal-driven air core within the fuel injector. During disruption of the air core inside an injector, spray characteristics outside the nozzle reflect a highly unstable, nonlinear mode where air core length, Sauter mean diameter (SMD), cone angle, and discharge coefficient variability. To better understand injector performance, these characteristics of the pressure-swirl atomizer were experimentally investigated and data were correlated to Reynolds numbers (Re). Using a transparent acrylic nozzle, the air core length, SMD, cone angle, and discharge coefficient are observed as a function of Re. The critical Reynolds numbers that distinguish the transition from unstable mode to transitional mode and eventually to a stable mode are reported. The working fluids are diesel and a kerosene-based fuel, referred to as bunker-A. © 2010 Elsevier Inc.

키워드

Air core; Fuel injector performance; Swirl spray; Temperature effect; Air core; Cone angle; Critical Reynolds number; Discharge coefficients; Flow regimes; Fuel injector performance; Fuel injectors; High viscosities; Low temperatures; Nonlinear mode; Operating condition; Sauter mean diameters; Spray characteristics; Stable modes; Swirl atomizers; Swirl sprays; Temperature changes; Temperature effect; Thermal fluids; Unstable modes; Working fluid; Centrifugation; Fuel injection; Fuels; Jet pumps; Reynolds number; Temperature; Spray nozzles
제목
Measuring air core characteristics of a pressure-swirl atomizer via a transparent acrylic nozzle at various Reynolds numbers
저자
Lee, E.J.; Oh, S.Y.; Kim, H.Y.; James, S.C.; Yoon, S.S.
DOI
10.1016/j.expthermflusci.2010.07.010
발행일
2010
유형
Article
저널명
Experimental Thermal and Fluid Science
권
34
호
8
페이지
1475 ~ 1483