Over-wing integration of ultra-high bypass ratio engines: A coupled wing redesign and engine position study
Artikel i vetenskaplig tidskrift, 2023
This paper presents a novel wing redesign method, specifically developed for over-wing mounted engines. The wing is reshaped to recover the spanwise lift distribution of the clean airframe (wing-body) configuration, for a single aisle airliner at a cruise condition. The wing redesign is conducted along with an engine position sensitivity study, in which the wing is reshaped for different engine axial and vertical positions. The coupling between propulsion and aerodynamics is thoroughly investigated, as well as the interaction and interference effects between the wing, pylon, and nacelle. Moreover, the best over-wing solution is compared to a baseline under-wing mounted nacelle. Results show that, by applying the developed method, an overall drag reduction of 17.65 counts, or 6.4%, was obtained, compared to the initial over-wing configuration, comprising the original wing and baseline engine position. Nonetheless, the best over-wing nacelle design is still 5.58 counts, or 2%, higher in overall drag compared to the baseline under-wing mounted nacelle case.
Aerodynamics
Ultra-high bypass ratio
Wing design
Computational fluid dynamics
Over-wing nacelle
Propulsion integration
Författare
Vinícius Tavares Silva
Chalmers, Mekanik och maritima vetenskaper, Strömningslära
Anders Lundbladh
Chalmers, Mekanik och maritima vetenskaper
Carlos Xisto
Chalmers, Mekanik och maritima vetenskaper, Strömningslära
Tomas Grönstedt
Chalmers, Mekanik och maritima vetenskaper, Strömningslära
Aerospace Science and Technology
1270-9638 (ISSN)
Vol. 138 108350Prestanda för turbofläkt integrerad i flygplan
VINNOVA (2017-04865), 2017-11-10 -- 2022-08-31.
Drivkrafter
Hållbar utveckling
Styrkeområden
Transport
Ämneskategorier
Rymd- och flygteknik
Strömningsmekanik och akustik
DOI
10.1016/j.ast.2023.108350