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Reducing transatlantic flight emissions by fuel-optimised routing

Wells, Cathie A.; Williams, Paul D.; Nichols, Nancy K.; Kalise, Dante; Poll, Ian

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Authors

Cathie A. Wells

Paul D. Williams

Nancy K. Nichols

Dante Kalise

Ian Poll



Abstract

© 2021 The Author(s). After decades of limited situational awareness for aircraft flying in the mid-North Atlantic, full satellite coverage will soon be available. This opens up the possibility of altering flight routes to exploit the wind field fully. By considering flights between New York and London, from 1 December, 2019 to 29 February, 2020, it is shown how changes to current practice could significantly reduce fuel use and, hence, greenhouse gas emissions. When airspeed and altitude are constant, the fuel flow rate per unit time is constant and the route with the minimum journey time uses the least fuel. Optimal control theory is used to find these minimum time routes through wind fields from a global atmospheric re-analysis dataset. The total fuel burn and, hence, the emissions (including CO2) are proportional to the 'air distance' (the product of airspeed and flight time). Minimum-time routes are compared with the actual routes flown through the wind fields. Results show that current flight tracks have air distances that are typically several hundred kilometres longer than the fuel-optimised routes. Potential air distance savings range from 0.7% to 7.8% when flying west and from 0.7% to 16.4% when flying east, depending on airspeed and which of the current daily tracks is used. Thus, substantial reductions in fuel consumption are possible in the short term. This is in contrast to the incremental improvements in fuel-efficiency through technological advances, which are high cost, high risk and take many years to implement.

Citation

Wells, C. A., Williams, P. D., Nichols, N. K., Kalise, D., & Poll, I. (2021). Reducing transatlantic flight emissions by fuel-optimised routing. Environmental Research Letters, 16(2), Article 025002. https://doi.org/10.1088/1748-9326/abce82

Journal Article Type Article
Acceptance Date Nov 27, 2020
Online Publication Date Jan 26, 2021
Publication Date Feb 1, 2021
Deposit Date Feb 1, 2021
Publicly Available Date Feb 2, 2021
Journal Environmental Research Letters
Electronic ISSN 1748-9326
Publisher IOP Publishing
Peer Reviewed Peer Reviewed
Volume 16
Issue 2
Article Number 025002
DOI https://doi.org/10.1088/1748-9326/abce82
Keywords Renewable Energy, Sustainability and the Environment; Public Health, Environmental and Occupational Health; General Environmental Science
Public URL https://nottingham-repository.worktribe.com/output/5276253
Publisher URL https://iopscience.iop.org/article/10.1088/1748-9326/abce82

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