가스 제트 모델을 이용한 DME 분무 해석의 격자 의존성 저감

Reduction of Grid Size Dependency in DME Spray Modeling with Gas-jet Model
  • 오윤중
  • 김사엽
  • 이창식
  • 박성욱

초록

This paper describes the grid-size dependency of the conventional Eulerian-Lagrangian method to spray characteristics such as spray penetration and SMD in modeling DME sprays. In addition, the reduction of the grid-size dependency of the present Gas-jet model was investigated. The calculations were performed using the KIVA code and the calculated results were compared to those of experimental result. The results showed that the conventional Eulerian-Laglangian model predicts shorter spray penetration for large cell because of inaccurate calculation of momentum exchange between liquid and gas phase. However, it was shown that the gas-jet model reduced grid-size dependency to spray penetration by calculating relative velocity between liquid and ambient gas based on gas jet velocity.

키워드

가스 제트 모델격자 의존성KIVA-3V code라그랑지-오일러 기법DME(Dimethyl ether)Gas-jet modelGrid dependencyKIVA-3V codeLagrangian-Eulerian method
제목
가스 제트 모델을 이용한 DME 분무 해석의 격자 의존성 저감
제목 (타언어)
Reduction of Grid Size Dependency in DME Spray Modeling with Gas-jet Model
저자
오윤중김사엽이창식박성욱
발행일
2010-12
저널명
한국액체미립화 학회지
15
4
페이지
170 ~ 176