• 제목/요약/키워드: Rotating Seat

검색결과 12건 처리시간 0.019초

Structural Stability of High-temperature Butterfly Valve Using Interaction Analysis

  • Lee, Moon-Hee;Son, In-Soo
    • 한국산업융합학회 논문집
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    • 제23권6_1호
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    • pp.881-888
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    • 2020
  • A butterfly valve is a valve that adjusts flow rate by rotating a disc for about 90° with respect to the axis that is perpendicular to the flow path from the center of its body. This valve can be manufactured for low-temperature, high-temperature and high-pressure conditions because there are few restrictions on the used materials. However, the development of valves that can be used in a 600℃ environment is subject to many constraints. In this study, the butterfly valve's stability was evaluated by a fluid-structured interaction analysis, thermal-structure interaction analysis, and seismic analysis for the development of valves that can be used in high-temperature environments. When the reverse-pressure was applied to the valve in the structural analysis, the stress was low in the body and seat compared to the normal pressure. Compared with the allowable strength of the material for the parts of the valve system, the minimum safety factor was approximately 1.4, so the valve was stable. As a result of applying the design pressures of 0.5 MPa and 600℃ under the load conditions in the thermal-structural analysis, the safety factor in the valve body was about 3.4 when the normal pressure was applied and about 2.7 when the reverse pressure was applied. The stability of the fluid-structure interaction analysis was determined to be stable compared to the 600℃ yield strength of the material, and about 2.2 for the 40° open-angle disc for the valve body. In seismic analysis, the maximum value of the valve's stress value was about 9% to 11% when the seismic load was applied compared to the general structural analysis. Based on the results of this study, the structural stability and design feasibility of high-temperature valves that can be used in cogeneration plants and other power plants are presented.

능동 진동 제어 시스템을 이용한 UH-60A 헬리콥터 기체의 진동 감소 시뮬레이션 (Vibration Reduction Simulation of UH-60A Helicopter Airframe Using Active Vibration Control System)

  • 이예린;김도영;김도형;홍성부;박재상
    • 한국항공우주학회지
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    • 제48권6호
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    • pp.443-453
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    • 2020
  • 대표적인 기동 헬리콥터인 UH-60A의 기체 진동응답을 감소시키고자 능동 진동 제어 시스템(Active Vibration Control System, AVCS)을 이용한 시뮬레이션 연구를 수행하였다. 로터 진동 하중, 기체 구조 동역학 모델링, 진동응답 해석 및 진동 제어 시뮬레이션 연구를 수행하기 위하여 DYMORE II, NDARC, MSC.NASTRAN 및 MATLAB Simulink 등의 다양한 해석, 설계 및 제어 프로그램들을 함께 사용하였다. 5개의 CRFG와 7개의 가속도계로 이루어진 Multi Input Multi Output(MIMO) 모델을 AVCS 시뮬레이션 연구에 이용하였다. 본 시뮬레이션 연구를 통하여 진동이 극심한 158knots의 비행속도에서 UH-60A의 주요 위치(조종석, 로터와 기체의 접합부, 중앙 승객실 및 후방 승객실) 위치에서 AVCS의 사용으로 인하여 4/rev 기체 진동응답이 25.14~96.05%만큼 감소될 수 있었다.