Physics-based Modelling for Aircraft Noise and Emission Predictions
Licentiatavhandling, 2022
An important part of the presented research focused on sustainability aspects and the evaluation of interdependencies between noise, NOx and CO2 emissions. New propulsion system designs were generated for a state-of-the-art ultra-high bypass ratio turbofan engine by allowing variation in the OPR (Overall Pressure Ratio), FPR (Fan Pressure Ratio) and BPR (Bypass Ratio). By varying these parameters, the engine was optimized for minimum installed specific fuel consumption. Allowing minimum fuel burn variation around this optimal point, different engine designs and operational characteristics were established and trades between LTO (Landing and Take-off) NOx emissions and cumulative noise were examined.
Another aspect focusing on the sustainability of air transport concerns the operational level, where the aim is to establish improved procedures and trajectories through the use of the existing technology. Several noise abatement procedures already exist and are implemented to reduce pollution around airports. Focusing on approach procedures, these standard operations were evaluated for noise and emissions. More advanced procedures were designed and assessed for their environmental impact and optimization was carried out to establish the optimal procedure for specific cases. It was demonstrated that quantifying these trade-offs and adapting the design to specific conditions is essential when new flight procedures are designed.
measurements
trajectories.
emissions
interdependencies
FDR
turbofan engine
aircraft noise
physics-based modelling
Författare
Evangelia Maria Thoma
Chalmers, Mekanik och maritima vetenskaper, Strömningslära
Quantifying the Environmental Design Trades for a State-of-the-Art Turbofan Engine
Aerospace,;Vol. 7(2020)p. 1-16
Artikel i vetenskaplig tidskrift
Thoma, E.M., Grönstedt, T., Otero, E., Zhao, X. Environmental Assessment of Noise Abatement Approach Trajectories
CIDER
Trafikverket (TRV2019/95826), 2019-09-02 -- 2023-10-01.
Drivkrafter
Hållbar utveckling
Styrkeområden
Transport
Ämneskategorier
Rymd- och flygteknik
Strömningsmekanik och akustik
Utgivare
Chalmers
MA, Hörsalsvägen 5, Chalmers and Zoom (password: 568901)
Opponent: Roberto Merino Martinez, TU Delft, Netherlands