شماره ركورد كنفرانس :
5048
عنوان مقاله :
“Numerical study of atomization processes in non-evaporating hollow-cone sprays”
Author/Authors :
Sajed ،Hadi Bafekr Toosi University of Technology - Tehran, Iran , Mehrzad ،Shams Mechanical Engineering Faculty in K. N - Toosi University of Technology - Tehran, Iran , Reza ،Ebrahimi Aerospace Engineering Faculty in K. N - Toosi University of Technology - Tehran, Iran , Abdollah ،shadaram Mechanical Engineering Faculty in K. N - Toosi University of Technology - Tehran, Iran
كليدواژه :
Spray characteristics , primary breakup , secondary breakup , penetration
عنوان كنفرانس :
ششمين كنگره بين المللي مهندسي شيمي
چكيده لاتين :
To gain a general understanding of atomization and sheet breakup processes, the interaction of pressure-swirl hollowcone
sprays and a quiescent medium was investigated computationally. The spray characteristics of Iso-octane (n-
8 18 C H ) with high pressure-swirl injector in the ambient conditions are modeled. The Linearized Instability Sheet
Atomization (LISA) model has been used to describe the primary breakup processes of the spray. Sauter mean diameter,
sheet thickness and exit velocity were computed as the results of primary breakup. Disintegration of large drops is
simulated using Taylor analogy breakup (TAB) model in which the Rosin-Rammler distribution is used. Evaporation
and collision models are deactivated in this study. The model considers the transient behavior of the pre-spray and
steady-state behavior of the main spray for two various injection pressures and liquid mass flow rates. Qualitative and
quantitative comparisons between the simulated and experimentally measured results were made. The numerical
simulations can successfully demonstrate the spray characteristics, such as spray tip penetration, drop sizes and overall
spray structure.