비평면 양력면 이론과 반복적 캠버변형 기법을 이용한 날개의 실속 특성 예측

Stall Prediction of Wing Using the Nonplanar Lifting Surface Theory and an Iterative Decambering Approach
  • 조정현
  • 조진수
  • 조연우

초록

This paper predicts the stall characteristics of three-dimensional wings. An iterative decambering approach is introduced into the nonplanar lifting surface method to take into consideration the stall characteristics of wings. An iterative decambering approach uses known airfoil lift curve and moment curve to predict the stall characteristics of wings. The multi-dimensional Newton iteration is used to take into consideration the coupling between the different sections of wings. Present results are compared with experiments and other numerical results. Computed results are in good agreement with other data. This scheme can be used for any wing with the twist or control surface and for wing-wing configurations such as wing-tail configuration or canard-wing configuration.

키워드

Nonplanar Lifting Surface Theory비평면 양력면 이론Iterative Decambering Approach반복적 캠버변형 기법Stall Prediction실속 예측Newton Iteration뉴턴 반복법Nonplanar Lifting Surface Theory비평면 양력면 이론Iterative Decambering Approach반복적 캠버변형 기법Stall Prediction실속 예측Newton Iteration뉴턴 반복법
제목
비평면 양력면 이론과 반복적 캠버변형 기법을 이용한 날개의 실속 특성 예측
제목 (타언어)
Stall Prediction of Wing Using the Nonplanar Lifting Surface Theory and an Iterative Decambering Approach
저자
조정현조진수조연우
발행일
2006-10
저널명
한국항공우주학회지
34
10
페이지
1 ~ 6