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한종섭(Jong-seob Han),장조원(Jo Won Chang),김선태(Sun-tae Kim) 한국가시화정보학회 2010 한국가시화정보학회 학술발표대회 논문집 Vol.2010 No.11
Flow visualizations and force measurements on the insect-based flapping wing were carried out to obtain design parameters of an insect-based MAV. In low Reynolds number, aerodynamic forcepeaks were discovered due to the wake induced by the previous stroke near the start of stroke. These peaks were not found out in case of high Reynolds number of 1.5×10⁴. The strong downwash by high flapping frequency was observed instead of the wake in the wake region. The LEV located between flapping wing and the downwash, prevented the interaction in that condition. These results indicate that additional aerodynamic force such as the wake-capture, is not appearedin the high Reynolds number. Aerodynamic models in quasi-steady state is applicable to MAV design because an unsteady effect by the wake disappears in the high Reynolds number.
곤충 모방형 플래핑 날개의 공력특성에 관한 가로세로비 효과
한종섭(Jong-seob Han),장조원(Jo Won Chang),전창수(Chang Soo Jeon) 한국항공우주학회 2012 韓國航空宇宙學會誌 Vol.40 No.8
생체 모방형 초소형비행체의 설계 파라미터를 해석하기 위해 플래핑 날개의 공력특성에 관한 가로세로비의 효과가 조사되었다. 실험 모델은 4절 링크로 구성되었으며, 낮은 레이놀즈수 조건을 갖는 수조 내부에서 구동되었다. 미세힘 측정용 방수 로드셀이 제작되어 아크릴로 만든 날개의 뿌리에 설치되었다. 날개 형상은 초파리의 날개 모양을 기준으로 하였다. 선택된 가로세로비는 각각 1.87, 3.74, 7.48이었으며, 레이놀즈수는 10⁴에 고정되었다. 가로세로비 1.87과 3.74에서는 후류포획과 같은 비정상효과를 나타내는 뚜렷한 양력 피크가 스트로크 초기에 관찰되었다. 그러나 가로세로비 7.48의 경우 상기 비정상 효과는 관찰되지 않았다. 이러한 물리적 특징은 후행회전인 경우에서도 동일하게 관찰되었다. 이와 같은 결과는 MAV 설계에 적용할 수 있는 곤충 모방형태의 플래핑 날개인 경우 높은 가로세로비의 날개가 향상된 공력성능을 제공한다는 것을 의미한다. The effect of aspect ratio (AR) on the aerodynamic characteristics of a flapping wing was examined to analyze the design parameters of an insect-based MAV. The experimental model constructed with 4-bar linkages was operated in a water tank with the condition of a low Reynolds number. A water-proof micro-force load cell was fabricated and installed at the root of the wing which is made of a plexiglas. The wing shapes were based on the planform of a fruit fly wing. The ARs selected were 1.87, 3.74 and 7.48 and the Reynolds number was fixed at 10⁴. For AR=1.87 and 3.74, distinct lift peaks which indicate unsteady effects such as ‘wake-capture’ were observed at the moment of the start of the wing-stroke. However, for AR=7.48, no unsteady effects were observed. These phenomena were also observed in the delayed rotation case. The results indicate that a larger AR provides better aerodynamic performance for the insect-based flapping wing which can be applied in MAV designs.
날갯짓 비행 로봇의 세로방향 비행 동역학 모델링 및 안정성 해석
김중관(Joong-Kwan Kim),한종섭(Jong-Seob Han),김호영(Ho-Young Kim),한재흥(Jae-Hung Han) 제어로봇시스템학회 2015 제어·로봇·시스템학회 논문지 Vol.21 No.1
This paper investigates the longitudinal flight dynamics and stability of flapping-wing micro air vehicles. Periodic external forces and moments due to the flapping motion characterize the dynamics of this system as NLTP (Non Linear Time Periodic). However, the averaging theorem can be applied to an NLTP system to obtain an NLTI (Non Linear Time Invariant) system which allows us to use a standard eigen value analysis to assess the stability of the system with linearization around a reference point. In this paper, we investigate the dynamics and stability of a hawkmoth-scale flapping-wing air vehicle by establishing an LTI (Linear Time Invariant) system model around a hovering condition. Also, a direct time integration of full nonlinear equations of motion of the flapping-wing micro air vehicle is conducted to see how the longitudinal flight dynamics appear in the time domain beyond the reference point, i.e. hovering condition. In the study, the flapping-wing air vehicle exhibited three distinct dynamic modes of motion in the longitudinal plane of motion: two stable subsidence modes and one unstable oscillatory mode. The unstable oscillatory mode is found to be a combination of a pitching velocity state and a forward/backward velocity state.
김동하(Dong-Ha Kim),한종섭(Jong-Seob Han),장조원(Jo-Won Chang),김학봉(Hak-Bong Kim) 한국항공우주학회 2009 韓國航空宇宙學會誌 Vol.37 No.11
평판 유동에서 유동을 제어하기 위하여 압전 세라믹을 이용한 액추에이터가 설계되었다. 액추에이터가 15㎐의 낮은 가진 주파수로 구동할 때, 설계된 액추에이터에 의해 발생된 유동 교란을 알아보기 위해 경계층 측정이 수행되었다. 경계층에서의 평균 유동속도와 섭동량이 액추에이터 끝단에서 x/δ<SUP>*</SUP>=31.9 떨어진 하류위치에서 1축 열선프로브(55P14)로 측정되었다. 측정 결과, 속도가 느린 영역과 빠른 영역이 각각 액추에이터의 중심부근 및 바깥부분에서 관찰되었으며, 이것으로 서로 마주보며 회전하는 한 쌍의 유동방향 와류의 발생이 예측되었다. 섭동량은 액추에이터의 바깥부분에서 크게 나타났으며, 벽면근처에서 유동방향 속도의 스팬방향 변화에서 변곡점이 관찰되었다. 액추에이터가 낮은 주파수에서 구동하는 경우에는 경계층 불안정성이 액추에이터의 가진 주파수와 T-S 파동에 해당하는 주파수에서 함께 증폭된다. An actuator using piezoceramic material was designed in order to perform a flow control for flat plate flow. Boundary layer measurements were carried out to explore the flow disturbances by the designed actuator that was activated at low excitation frequency(15㎐). The mean velocity and fluctuation in the boundary layers were measured at x/δ<SUP>*</SUP>=31.9 downstream from the actuator tip by a one-dimensional hot-wire probe(55P14). Results reveal that low- and high-velocity regions were observed in the vicinity of the actuator center and in the outer area of the actuator respectively, and the formation of counter-rotating streamwise vortices was predicted. The fluctuations were persistently found in the outer part of the actuator and an inflection point in the spanwise gradient of the streamwise velocity was observed. Boundary layer instability was amplified at both the actuator excitation frequency and the T-S wave frequency when the actuator was excited at low frequency.