Efficacy of Scalable Airline-led Contrail Avoidance

Thomas Dean
Tristan Abbott
Jill Blickstein
Alejandra Martín Frías
Mark Galyen
Rebecca Grenham
Paul Hodgson
Alan Pechman
Tyler Robarge
Dinesh Sanekommu
Aarón Sonabend
Marc E.J. Stettler
Raimund Zopp
Journal of Environmentally Compatible Air Transport System (JECATS) (2026) (to appear)
Google Scholar

Abstract

Contrails account for a large portion of aviation's contribution to anthropogenic climate change. Navigational contrail avoidance is a promising solution to mitigate the warming caused by contrails. Prior trials testing navigational contrail avoidance have relied on bespoke integrations of contrail forecasts into airline operations. Here, we use a randomized control trial to test the feasibility of dispatcher-led contrail avoidance integrated into standard flight planning operations using a workflow which scales to an airline's entire network. Using satellite imagery and an automated flight-contrail attribution algorithm, we observed an 11.6% reduction in contrail formation rate for the 1232 flights marked as eligible for contrail avoidance (intent-to-treat) relative to the flights in the control group (p = 0.0109). In the 112 flights which flew contrail avoidance as planned (per-protocol flights), we observed a 62.0% lower contrail formation rate relative to the flights in the control group (p < 0.001). No statistically significant difference in fuel usage was observed between the two groups.
×