Configuration Study of Electric Helicopters for Urban Air Mobility

Author:

Cole Julia A.ORCID,Rajauski Lauren,Loughran Andrew,Karpowicz Alexander,Salinger Stefanie

Abstract

There is currently interest in the design of small electric vertical take-off and landing aircraft to alleviate ground traffic and congestion in major urban areas. To support progress in this area, a conceptual design method for single-main-rotor and lift-augmented compound electric helicopters has been developed. The design method was used to investigate the feasible design space for electric helicopters based on varying mission profiles and technology assumptions. Within the feasible design space, it was found that a crossover boundary exists as a function of cruise distance and hover time where the most efficient configuration changes from a single-main-rotor helicopter to a lift-augmented compound helicopter. In general, for longer cruise distances and shorter hover times, the lift-augmented compound helicopter is the more efficient configuration. An additional study was conducted to investigate the potential benefits of decoupling the main rotor from the tail rotor. This study showed that decoupling the main rotor and tail rotor has the potential to reduce the total mission energy required in all cases, allowing for increases in mission distances and hover times on the order of 5% for a given battery size.

Funder

Pennsylvania Space Grant Consortium

Henry Luce Foundation

Publisher

MDPI AG

Subject

Aerospace Engineering

Reference30 articles.

1. 21st Century Personal Air Vehicle Research

2. VTOL Urban Air Mobility Concept Vehicles for Technology Development

3. Fast-Forwarding to a Future of On-Demand Urban Air Transportation;Holden,2016

4. eVTOL Stored Energy Overview;McDonald,2017

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