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Conceptual Design of a High-Speed Variable Configuration Compound Helicopter

机译:高速变构型复合直升机的概念设计

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In response to the 31th AHS Student Design Competition Request for Proposal, one of the Politecnico di Milano entrants teams in graduate category submitted the co-X HERMES project. The RFP, titled X-VTOL, was inspired to DARPA 2013 program called VTOL X-PLANE, soliciting proposal on the design of a VTOL experimental aircraft capable to increase top speed without sacrificing range, payload and the ability to operate in hover. The co-X HERMES is a fully compounded manned helicopter with coaxial rotor and pushing propeller unit mounted in tail, adopting dedicated design features in order to go beyond the limitations of this architecture and fulfill the RFP requirements. The aircraft works without thrust compounding from hover to about 140 kt, then the transition maneuver is performed and vehicle switch from helicopter to airplane modality to attain higher speed. The change of configuration involves: the main wing span, the rotors diameter and their angular velocity. In this paper the vehicle conceptual design process will be described, providing details about the most critical systems: variable rotor diameter, variable wing span and transmission. The performance evaluation will be presented, demonstrating the RFP requirements fulfillment, together with the results of conducted rotor multibody analysis and vehicle static stability analysis. Moreover preliminary considerations about the transition maneuver, the flight control system and the emergency operations will be discussed.
机译:为了响应第31届AHS学生设计竞赛的提案要求,一个由大学毕业生组成的米兰理工大学参赛团队之一提交了co-X HERMES项目。名为X-VTOL的RFP受到DARPA 2013计划VTOL X-PLANE的启发,该计划征询了有关VTOL实验飞机设计的建议,该飞机能够在不牺牲航程,有效载荷和悬停操作能力的情况下提高最高速度。 co-X HERMES是一架完全复合的载人直升机,带有同轴旋翼和安装在尾部的推进螺旋桨单元,采用了专门的设计功能,以超越此架构的限制并满足RFP要求。飞机从悬停到约140 kt的推力复合没有工作,然后执行过渡机动,并且车辆从直升机模式切换到飞机模式以实现更高的速度。构型的变化涉及:主翼跨度,旋翼直径及其角速度。在本文中,将对车辆的概念设计过程进行描述,并提供有关最关键系统的详细信息:可变转子直径,可变翼展和变速箱。将进行性能评估,展示RFP要求的满足情况,以及进行的转子多体分析和车辆静态稳定性分析的结果。此外,还将讨论有关过渡机动,飞行控制系统和紧急行动的初步考虑。

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