Numerical investigation of the effects of fuselage upsweep in a propulsive fuselage concept

Author:

Habermann Anaïs LuisaORCID,Gokhale Anubhav,Hornung Mirko

Abstract

AbstractIn recent years, aircraft concepts employing wake-filling devices to reduce mission fuel burn have gained increasing attention. The study presented here aims at a detailed physical understanding of the effects of integrating a propulsive fuselage device on a commercial aircraft. Compared to an isolated, axisymmetric fuselage-propulsor configuration, a propulsive fuselage device experiences an increased circumferential inlet distortion due to three-dimensional geometric features of the aircraft. This study uses three-dimensional CFD simulations to investigate the effect of fuselage upsweep on the aero-propulsive performance of an aircraft configuration featuring a boundary layer ingestion device. It is shown that fuselage upsweep has a negative impact on the performance of a propulsive fuselage device as compared to an axisymmetric configuration. Increasing the upsweep angle by $$\Delta \alpha _{{{\text{SW}},{\text{PFC}}}} = 3.5^\circ$$ Δ α SW , PFC = 3 . 5 leads to an increase in required fuselage fan shaft power by 19%. Furthermore, it is demonstrated that the negative effects of fuselage upsweep on the propulsor’s performance can be effectively mitigated by a circumferential variation in the propulsor nacelle thickness.

Funder

Horizon 2020

Publisher

Springer Science and Business Media LLC

Subject

Aerospace Engineering,Transportation

Reference41 articles.

1. Bolonkin, A.: A high efficiency fuselage propeller (“Fusefan”) for subsonic aircraft. In: SAE Technical Paper, no. 1991-01-5569, pp. 1063–1075 (1999)

2. Steiner, H.-J., Seitz, A., Wieczorek, K., Plötner, K., Isikveren, A.T., Hornung, M.: Multi-disciplinary design and feasibility study of distributed propulsion systems. In: 28th International Congress of the Aeronautical Sciences (2012)

3. Isikveren, A.T., Seitz, A., Bijewitz, J., Mirzoyan, A., Isyanoc, A., Grenon, R., Atinault, O., Godard, J.-L., Stückl, S.: Distributed propulsion and ultra-high by-pass rotor study at aircraft level. Aeronaut. J. 119(1221), 1327–1376 (2015)

4. Seitz, A., Bijewitz, J., Habermann, A., Goraj, Z., Kowalski, M., Castillo Pardo, A., Hall, C., Meller, F., Merkler, R., Petit, O., Samuelsson, S., Della Corte, B., van Sluis, M., Wortmann, G., Dietz, G.: Concept validation study for fuselage wake-filling propulsion integration. In: 31st Congress of the International Council of the Aeronautical Sciences (2018)

5. Welstead, J.R., Felder, J.L.: Conceptual design of a single-aisle turboelectric commercial transport with fuselage boundary layer ingestion. In: 54th AIAA aerospace sciences meeting (2016)

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