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Aeromechanics Investigation of Tiltrotor Transition Maneuver

机译:铁舷转换机动的航空力学调查

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Aeromechanics analysis is performed using the comprehensive analysis code RCAS (Rotorcraft Comprehensive Analysis System) to study the transient conversion maneuver of a tiltrotor. The analytical model is based on the XV-15 research tiltrotor aircraft in size and dynamic characteristics. A generic (not representative of XV-15) tiltrotor control system is developed to simulate conversion maneuver. The calculation begins with a trim analysis at hover, which is followed by the conversion maneuver. During the maneuver analysis, the pilot control model is activated to fly the aircraft following a desired airspeed profile and zero altitude change. Time histories of vehicle dynamics, rotor controls, rotor flapping, rotor performance and blade structural loads are investigated for various transient conversion maneuver flight conditions. The aircraft longitudinal acceleration is larger for the faster conversion (shorter conversion time) and for the higher cruise speed (conversion end speed). The aircraft acceleration during the transient maneuver has a significant influence on the rotor performance and loads.
机译:使用综合分析码RCA(旋翼综合分析系统)来研究航空力学分析来研究乘性脚轮的瞬态转换机动。分析模型基于XV-15的XV-15尺寸和动态特性研究泰尔特罗特飞机。开发了一种通用(非代表XV-15)TiltrotOR控制系统以模拟转换机动。该计算在悬停时的修剪分析开始,然后跟随转换机动。在机动分析期间,在所需的空速曲线和零高度变化之后,激活导频控制模型以飞行飞机。为各种瞬态转换机动飞行条件研究了车辆动力学,转子控制,转子拍打,转子性能和叶片结构载荷的时间历史。对于更快的转换(转换时间)和较高的巡航速度(转换结束速度),飞机纵向加速度更大。瞬态操纵期间的飞机加速对转子性能和负载具有显着影响。

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