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Community Noise Reduction Assessment of Using Windmilling Drag on Approach by Hybrid Electric Aircraft

Jacqueline ThomasMassachusetts Institute of TechnologyR. John HansmanMassachusetts Institute of Technology
2020en
ABI

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This paper presents a systems assessment of the community noise impacts of turbo-electric aircraft implementing windmilling motors as drag generators on approach. Increasing desire to reduce emissions caused by aviation has motivated the development of hybrid electric aircraft that have some degree of their traditional gas-turbine propulsion replaced with electric propulsion. Turbo-electric propulsion offers flexibility in the engine architecture that allows hybrid electric aircraft to be capable of certain advanced operational noise abatement flight procedures. Steep and delayed-configuration approaches are example flight procedures that enable significant noise reductions on approach but require the aircraft to have enough drag for the approach to be stable. Windmilling is an alternative mechanism to create drag during descent and is possible in architectures where the fan is powered by an electric motor. Results examining the potential benefits of representative turbo-electric aircraft implementing this controlled drag concept on both delayed deceleration and steeper approaches are presented. Results indicate that windmilling fans are quieter than standard drag producing devices and can be used to yield significant community noise reductions compared to aircraft performing standard approaches.

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