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소형 풍력발전기 블레이드의 구조설계 및 충격손상 안전성 연구
공창덕,최수현,박현범,Kong, Changduk,Choi, Suhyun,Park, Hyunbum 항공우주시스템공학회 2008 항공우주시스템공학회지 Vol.2 No.2
Recently the wind energy has been alternatively used as a renewable energy resource instead of the mostly used fossil fuel due to its lack and environmental issues. This work is to propose a structural design and analysis procedure for development of the low noise 100W class small wind turbine system which will be applicable to relatively low speed region like Korea and for the domestic use. Structural analysis including load cases, stress, deformation, buckling, vibration and fatigue life was performed using the Finite Element Method, the load spectrum analysis and the Miner rule. In order to evaluate the designed structure, the structural test was carried out and its test results were compared with the estimated results. In addition, the blade should be safe from the impact damage due to FOD(Foreign Object Damage) including the bird strike. In order to analize the bird strike penomena on the blade, MSC. Dytran was used, and the applied method Arbitrary Lagrangian-Eulerian was evalud by comparison with the previous study results.
고효율 복합계 블레이드를 사용한 500W급 풍력터빈에 관한 연구
공창덕(Changduk Kong),최수현(Suhyun Choi),박현범(Hyunbum Park) 한국항공우주학회 2009 韓國航空宇宙學會誌 Vol.37 No.2
최근 화석 연료가 고갈됨에 따라 대체 에너지 개발 연구가 활발히 진행되고 있다. 여러 대체 에너지들 중 풍력 발전시스템은 바람의 에너지를 전기적 에너지로 바꾸어 주는 시스템으로 매우 친환경적이기 때문에 다양하게 연구되고 있다. 따라서 본 연구에서 500w급 소형 풍력 발전용 블레이드의 개발을 통해 외국에 비하여 상대적으로 풍속이 낮은 국내와 같은 지역에 적용할 수 있는 블레이드 설계를 수행하였다. 본 논문에서는 피로수명을 고려한 고효율 경량화 블레이드의 공력설계 및 구조설계 방법이 제안되었으며, 구조해석으로 선형 정적해석, 좌굴해석, 진동모드해석이 수행되었다. 이론적 해석 결과를 입증하기 위하여 구조 시험 및 공력 성능 시험 결과 비교적 잘 일치하며 설계 요구 조건을 만족함을 확인하였다. Recently, the wind energy has been widely used as a renewable energy resource due to lack and environmental issues of the mostly used fossil fuel. This work is to develop a 500W class small wind turbine blade which will be applicable to relatively low speed region like Korea and for the domestic use. For this blade a high efficiency wind turbine blade was designed with the proposing aerodynamic design procedure, and a light and low cost composite structure blade was designed considering fatigue life. Structural analyses including load case study, stress, deformation, buckling and vibration analysis were performed using the Finite Element Method. The fatigue life was estimated using the load spectrum analysis and the Miner rule. In order to evaluate the designed blade, the structural and aerodynamic performance tests were carried out, and the test results were compared with the analysis results.