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Possible hybrid propulsion configuration for transport jet aircraft

机译:运输喷气飞机的可能混合动力推进配置

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摘要

This research is aimed at studying the possible advantages of installing, for a hybrid propulsion aircraft, electric motors and related propellers into the dedicated supplementary nacelles. This innovative solution is different from the configuration, already studied for a regional turboprop (Chiesa et al. 2013), in which the electric motors are in the same nacelles of the internal combustion engines. As it has been expected, it offers the advantages of avoiding mechanical links between the two units and, more importantly, can also be applied to jet aircraft. In fact, the main contribution of electric motors is expected during ground operations, take-off and descent phases (i.e. at low speed), in which it can be useful to integrate the propellers or even substitute the jet engines with them. At high speed, the propellers, of course, are configured in order to reduce drag. When considering the design of a new airliner concept, a preliminary design study is necessary to optimize the location of the supplementary nacelles. The nacelles, which only hold the electrical motor, can also be considered retractable, as is usual for a RAT (Ram Air Turbine). Please note that in the hybrid propulsion context, the RAT function can be clearly allocated to the electric motor, with the advantages of optimizing drag at high speed, taking into account installation problems
机译:这项研究旨在研究将混合动力推进器,电动机和相关螺旋桨安装到专用机舱中的可能优势。这种创新的解决方案不同于已经针对区域涡轮螺旋桨发动机进行研究的配置(Chiesa等,2013),在该配置中,电动机位于内燃机的相同机舱中。如所期望的,其具有避免两个单元之间的机械连接的优点,更重要的是,还可以应用于喷气飞机。实际上,在地面操作,起飞和下降阶段(即低速)期间,可以预期电动机的主要作用,在这种情况下,将螺旋桨集成在一起,甚至用它们代替喷气发动机都是有用的。当然,为了降低阻力,螺旋桨在高速下也进行了配置。在考虑新客机概念的设计时,有必要进行初步设计研究,以优化辅助机舱的位置。如RAT(Ram Air Turbine)一样,仅容纳电动机的机舱也可以认为是可伸缩的。请注意,在混合动力推进环境中,可以将RAT功能明确分配给电动机,其优点是考虑到安装问题,可以优化高速拖动

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