- 3차원 축류압축기 블레이드의 유체유발진동 해석
- ㆍ 저자명
- 김동현,김유성,정규강,김경희,민대기,Kim. Dong-Hyun,Kim. Yu-Sung,Jung. Kyu-Kang,Kim. Kyung-Hee,Min. Dae-Gee
- ㆍ 간행물명
- 한국소음진동공학회논문집
- ㆍ 권/호정보
- 2009년|19권 6호|pp.551-559 (9 pages)
- ㆍ 발행정보
- 한국소음진동공학회
- ㆍ 파일정보
- 정기간행물| PDF텍스트
- ㆍ 주제분야
- 기타
In this study, flow-induced vibration(FIV) analyses have been conducted for a 3D compressor blade model. Advanced computational analysis system based on computational fluid dynamics(CFD) and computational structural dynamics(CSD) has been developed in order to investigate detailed dynamic responses of designed compressor blades. Fluid domains are modeled using the computational grid system with local grid deforming and remeshing techniques. Reynolds-averaged Navier-Stokes equations with $kappa-epsilon$ turbulence model are solved for unsteady flow problems of the rotating compressor model. A fully implicit time marching scheme based on the Newmark direct integration method is used for computing the coupled aeroelastic governing equations of the 3D compressor blade for fluid-structure interaction(FSI) problems. Detailed dynamic responses and instantaneous pressure contours on the blade surfaces considering flow-separation effects are presented to show the multi-physical phenomenon of the rotating compressor blade.