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재진입 비행체의 저고도에서의 공력 및 정적 안정성에 관한 전산해석COMPUTATIONAL ANALYSIS OF AERODYNAMICS AND STATIC STABILITY OF RE-ENTRY VEHICLE AT LOW ALTITUDES

Other Titles
COMPUTATIONAL ANALYSIS OF AERODYNAMICS AND STATIC STABILITY OF RE-ENTRY VEHICLE AT LOW ALTITUDES
Authors
박보근조성진최수민황선재명노신
Issue Date
Dec-2024
Publisher
한국전산유체공학회
Keywords
재진입 비행체; 정적 안정성; 천이 영역; 고속 유동; 전산유체역학; Re-entry vehicle; Static stability; Transitional regime; High-speed flow; Computational fluid dynamics
Citation
한국전산유체공학회지, v.29, no.4, pp 10 - 23
Pages
14
Indexed
KCI
Journal Title
한국전산유체공학회지
Volume
29
Number
4
Start Page
10
End Page
23
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/75512
ISSN
1598-6071
Abstract
Re-entry vehicles may experience unstable flow during descent to Earth at low altitudes and the flow can negatively affect the stability of the vehicle. In this study, we investigate the characteristics of rear wake flow and frontal shock waves of re-entry vehicles for the angle of attack of 0º to -60º in low altitude transitional regime using a Navier-Stokes code. Five species and the transition SST turbulence model are used to describe the low-altitude flows at subsonic to hypersonic speed. It was shown that recirculation rings are getting bigger at lower altitudes and smaller with increasing angle of attack. By calculating the pitching moment at the center of gravity, the vehicle was shown to be statically stable at a low angle of attack. The angle of attack of neutral static stability decreases as the Mach number increases. Additionally, the aerodynamic center of the vehicle is calculated at each altitude and moves near the vehicle as the Mach number increases.
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