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Citations since 2016
6 Research Items
The introduction of novel aircraft like those being developed for Advanced Air Mobility and electric Vertical Take off and Landing shines light on the additional safety considerations that must be accounted for. These aircraft cannot rely on historical data so a more proactive approach is needed to model their safety and better inform designers. Tr...
View Video Presentation: https://doi.org/10.2514/6.2022-0260.vid Novel aircraft, especially ones that utilize Distributed Electric Propulsion (DEP), are becoming increasingly popular for future aviation markets like Urban Air Mobility (UAM). The use of all electric propulsion systems promises more efficient aircraft that produce zero emissions. A l...
View Video Presentation: https://doi.org/10.2514/6.2021-3289.vid Distributed propulsion systems are enabled by electrified aircraft and can provide aero-propulsive benefits. The magnitude and impact of these benefits rely on the location of propulsors on the vehicle, the amount of propulsive force generated by those propulsors, vehicle geometry, an...
Electrified propulsion systems can provide potential environmental and performance benefits for future aircraft. The choice of the right propulsion architecture and the power management strategy depends on a number of factors, the airframe, electrification objectives and metrics of interest being the most critical ones. Therefore, the generic advan...