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Flow Field Characteristics and Lift Changing Mechanism for Half-Rotating Wing in Hovering Flight
[摘要] Half-rotating wing (HRW) is a new similar-flapping wing system based on half-rotating mechanism which could perform rotating-type flapping instead of oscillating-type flapping. The characteristics of flow field and lift changing mechanism for HRW in hovering flight are important theoretical basis to improve the flight capability of HRW aircraft. The driving mechanism and work process of HRW were firstly introduced in this paper. Aerodynamic simulation model of HRW in hovering flight was established and solved using XFlow software, by which lift changing rule of HRW was drawn from the simulation solution. On the other hand, the development and shedding of the distal vortex throughout one stroke would lead to the changes of the lift force. Based on analyzing distribution characteristics of vorticity, velocity and pressure around wing blade, the main features of the flow field for HRW were further given. The distal attached vortex led to the increase of the lift force, which would gradually shed into the wake with a decline of lift in the later downstroke. The wake ring directed by the distal end of the blade would generate the downward accelerating airflow which produced the upward anti-impulse to HRW. The research results mentioned above illustrated that the behavior characteristics of vortex formed in flow field were main cause of lift changing for HRW.
[发布日期]  [发布机构] School of Mechanical Engineering, Anhui University of Technology, Máanshan; 243002, China^1
[效力级别] 无线电电子学 [学科分类] 
[关键词] Aerodynamic simulations;Behavior characteristic;Characteristics of flow fields;Distribution characteristics;Driving mechanism;Flapping-wing systems;Flow field characteristics;Rotating mechanisms [时效性] 
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