Preliminary Design of a 6-Seater Electric Aircraft

Calvin Chandra, M Khan, T Putri, W Alexsoh, M A Moelyadi, E Amalia

Abstract


Demands for delivering a more sustainable and eco-friendly aircraft increase for the near future. However, the technology of current electric power for the aircraft (e.g., electric motors and batteries) is still lacking compared to matured power technology using fossil-fuel. A preliminary design of electric aircraft becomes initial important steps to obtain matured fully electric aircraft. This design step requires various analytical and software-based analyses to fullfill the design requirements and objectives. The design requirement of designing electric aircraft is aircraft with maximum take of weight of  5000 equipped with 6-seater. From the design results show that the designed aircraft fulfills all the requirements and most of the objectives. The design itself still need furtherdevelopment through optimization, re-evaluation, future studies, and upcoming technologies.

Keywords: Aircraft Design; Electric Aircraft; Sustainability


Full Text:

10-24 | PDF

References


E. A. E. Rodas, J. Lewe, D. N. Mavris, Feasibility Focused Design of Electric On-demands Aircraft Concepts, 2014.

S. Gudmundsson, General Aviation Aircraft Design: Applied Methods and Procedures, 1st ed.; ELSEVIER: Oxford, UK, 2014.

J. Roskam, Part I: Preliminary Sizing of Airplanes, DARcorporation: Kansas, USA, 1990.

D.P Raymer, Aircraft Design: A Conceptual Approach, 6th ed.; AAIA: Blacksburg, Virginia, 2018.

Jux B, Foitzik S, and Doppelbauer M 2018 A Standard Mission Profile for Hybrid-Electric Regional Aircraft based on Web Flight Data (Karlsruhe: Inst. Of Electrical Engineering).

M. H. Sadraey, Aircraft Design: A System Engineering Approach, 1st ed.; John Wiley & Sons Ltd: West Sussex, UK, 2013.

Prof. Dr. Hari Muhammad, Dr. Yazdi I Jenie l, AE3220 Flight Dynamics, Faculty of Mechanical and Aerospace Engineering ITB: Bandung, 2021.

E. Torenbeek, Synthesis of Subsonic Airplane Design; Delft University Press: Delft, Netherlands, 1982.

Ruijgrok G.J.J, Elements of Airplane Performance, 2nd ed.; VSSD: Delft, Netherlands, 2009.

.J. Roskam, Part VIII: Airplane Cost Estimation: Design, Development, Manufacturing and Operating, DARcorporation: Kansas, USA, 1990.

J. Roskam, Part III: Layout Design of Cockpit, Fuselage, Wing, and Empennage: Cutaways and Inboard Profiles, Kansas: Design, Analysis, and Research Corporation, 2002.

J. Roskam, Part II: Preliminary Configuration Design and Integration of the Propulsion System, Lawrence: DARcorporation, 1997.

CASR 23.. Airworthiness Standards: Normal, Utility, Acrobatic, and Commuter Category Airplanes. Indonesia: Ministry of Transportation.

M Sadraey, Aircraft Performance: Analysis; VDM Verlag Dr. Müller: Saarbrücken, Germany, 2011.




DOI: https://doi.org/10.47355/avia.v4i1.56

Refbacks

  • There are currently no refbacks.



Lisensi Creative Commons

AVIA is licensed under a Creative Commons Attribution 4.0 International License.

AVIA Statcounter :

View My Stats

 AVIA Flag Counter :

Flag Counter


AVIA on MAP :