세장비 3인 초음속 공동유동에서 3차원 효과로 인한유동 진동 주파수 분석

ANALYSIS OF FLOW OSCILLATION FREQUENCY DUE TO THREE-DIMENSIONAL EFFECT FOR SUPERSONIC CAVITY FLOW OF LENGTH-TO-DEPTH RATIO OF 3

초록

Unsteady turbulent flow simulations were performed to investigate flow oscillation frequency due to three dimensional effect in supersonic cavity flow of length-to-depth ratio of 3, width-to-depth ratio of 1 and Mach 1.5. Two- and three-dimensional unsteady simulations result were compared with experimental data and prediction from the Rossiter equation. Pressure oscillation in three-dimensional cavity and the corresponding frequency were well matched with the empirical data. The flow structure corresponding to each mode was investigated. The results show that two dimensional flow is in the wake mode and three-dimensional flow is mainly in the shear layer mode. The oscillation frequency spectrum clearly indicate the three-dimensional effect due to the sidewall.

키워드

공기역학(Aerodynamics)전산유체역학(CFD)비정상유동(Unsteady Flow)공동 유동(Cavity Flow)3차원 효과(Three-dimensional Effect)
제목
세장비 3인 초음속 공동유동에서 3차원 효과로 인한유동 진동 주파수 분석
제목 (타언어)
ANALYSIS OF FLOW OSCILLATION FREQUENCY DUE TO THREE-DIMENSIONAL EFFECT FOR SUPERSONIC CAVITY FLOW OF LENGTH-TO-DEPTH RATIO OF 3
저자
김태욱박수형이승수유동옥유흥철
DOI
10.6112/kscfe.2018.23.3.072
발행일
2018-09
유형
Y
저널명
한국전산유체공학회지
23
3
페이지
72 ~ 78