Aviation climate impact and opportunities for mitigation
Licentiatavhandling, 2026
oxides (NOx ) and contrails. The performance and thermodynamic constraints of the WET engine are evaluated, showing that installation effects may offset its previously predicted advantages. Overall, the findings in this thesis underscore the importance of addressing non-CO2 effects in aviation climate assessments and demonstrate that both targeted operational strategies and careful evaluation of emerging technologies are essential for achieving meaningful reductions in the sector’s climate impact.
Författare
Filip Herbertsson
Chalmers, Mekanik och maritima vetenskaper, Strömningslära
Performance assessment of the Water Enhanced Turbofan engine
Aerospace Science and Technology,;Vol. 178(2026)
Artikel i vetenskaplig tidskrift
Herbertsson, F. Grönstedt, T. Quantifying Aviation's Non-CO2 Climate Impact in the Nordic Environment
Metoder för utvärdering och implementering av klimatoptimal flygning (KLIMAFLY)
Energimyndigheten (2023-205322,P2023-01514), 2024-01-01 -- 2026-12-31.
Drivkrafter
Hållbar utveckling
Styrkeområden
Transport
Ämneskategorier (SSIF 2025)
Farkost och rymdteknik
Klimatvetenskap
Utgivare
Chalmers
HB3
Opponent: Richard Avellán, GKN Aerospace, Sverige