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GRC1: An Advanced Five-Bladed Bearingless Main Rotor Dynamics and Acoustics from Draft to Flight Test

机译:GRC1:从吃水到飞行测试的先进五叶无轴承主旋翼动力学和声学

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Funded by the European research program Clean Sky Green Rotorcraft (GRC), a new five-bladed bearingless main rotor demonstrator has been developed and tested between 2014 and 2016 at Airbus Helicopters, hereafter denoted as GRC1 rotor. While inheriting rotor controls, control cuff, flexbeam and lead-lag damper from the Bluecopter~(TM) main rotor, the rotor blade itself was developed from scratch within the research project. Main target was to achieve an ecofriendly design by simultaneously reducing acoustic signature, fuel consumption and vibratory loads while optimizing manufacturing costs. This could be achieved by proper balancing the requirements of the technical disciplines acoustics, aerodynamics, dynamics, loads, performance and handling qualities. While these targets have been achieved, demonstrated by ground and flight tests, excellent agreement between numerical predictions and test results was achieved. This paper provides an overview on the aeromechanics, acoustics and performance aspects after summarizing the evolution of bearingless main rotors at Airbus Helicopters.
机译:由欧洲研究计划Clean Sky Green Rotorcraft(GRC)资助的新型新型五叶片无轴承主旋翼演示器已在2014年至2016年间在空中客车直升机公司开发和测试,以下简称GRC1旋翼。在从Bluecopter〜(TM)主旋翼继承旋翼控制,控制袖带,柔性梁和超前滞后阻尼器的同时,旋翼桨叶本身是在研究项目中从零开始开发的。主要目标是通过同时减少声学特征,降低油耗和减少振动负荷并同时优化制造成本来实现环保设计。这可以通过适当平衡声学,空气动力学,动力学,载荷,性能和操纵质量等技术学科的要求来实现。尽管已经通过地面和飞行测试证明了这些目标的实现,但数值预测和测试结果之间却取得了极好的一致性。在总结空客直升机无轴承主旋翼的发展后,本文对航空力学,声学和性能方面进行了概述。

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