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Beyond contrail avoidance: Efficacy of flight altitude changes to minimise contrail climate forcing

Teoh, Roger und Schumann, Ulrich und Stettler, Marc E. J. (2020) Beyond contrail avoidance: Efficacy of flight altitude changes to minimise contrail climate forcing. Aerospace, 7 (121), Seiten 1-16. Multidisciplinary Digital Publishing Institute (MDPI). doi: 10.3390/aerospace7090121. ISSN 2226-4310.

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Offizielle URL: https://www.mdpi.com/2226-4310/7/9/121

Kurzfassung

Abstract: Contrail cirrus introduce a short-lived but significant climate forcing that could be mitigated by small changes in aircraft cruising altitudes. This paper extends a recent study to evaluate the efficacy of several vertical flight diversion strategies to mitigate contrail climate forcing, and estimates impacts to air traffic management (ATM). We use six one-week periods of flight track data in the airspace above Japan (between May 2012 and March 2013), and simulate contrails using the contrail cirrus prediction model (CoCiP). Previous studies have predominantly optimised a diversion of every contrail-forming flight to minimise its formation or radiative forcing. However, our results show that these strategies produce a suboptimal outcome because most contrails have a short lifetime, and some have a cooling effect. Instead, a strategy that reroutes 15.3% of flights to avoid long-lived warming contrails, while allowing for cooling contrails, reduces the contrail energy forcing (EF_contrail) by 105% [91.8, 125%] with a total fuel penalty of 0.70% [0.66, 0.73%]. A minimum EF_total strategy (contrails + CO2), diverting 20.1% of flights, reduces the EF_contrail by the same magnitude but also reduces the total fuel consumption by 0.40% [0.31, 0.47%]. For the diversion strategies explored, between 9% and 14% of diversions lead to a loss of separation standards between flights, demonstrating a modest scale of ATM impacts. These results show that small changes in flight altitudes are an opportunity for aviation to significantly and rapidly reduce its effect on the climate.

elib-URL des Eintrags:https://elib.dlr.de/135793/
Dokumentart:Zeitschriftenbeitrag
Zusätzliche Informationen:Special Issue "Selected Papers from 3rd ECATS Conference on Making Aviation Environmentally Sustainable"
Titel:Beyond contrail avoidance: Efficacy of flight altitude changes to minimise contrail climate forcing
Autoren:
AutorenInstitution oder E-Mail-AdresseAutoren-ORCID-iDORCID Put Code
Teoh, RogerCentre for Transport Studies, Imperial College, London, UKNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Schumann, UlrichDLR, IPAhttps://orcid.org/0000-0001-5255-6869NICHT SPEZIFIZIERT
Stettler, Marc E. J.Department of Civil and Environmental Engineering, Imperial College London, London, SW7 2AZ, United KingdomNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Datum:2020
Erschienen in:Aerospace
Referierte Publikation:Ja
Open Access:Ja
Gold Open Access:Ja
In SCOPUS:Ja
In ISI Web of Science:Ja
Band:7
DOI:10.3390/aerospace7090121
Seitenbereich:Seiten 1-16
Verlag:Multidisciplinary Digital Publishing Institute (MDPI)
ISSN:2226-4310
Status:veröffentlicht
Stichwörter:contrail, mitigation, climate, flight diversion, aviation, energy forcing
HGF - Forschungsbereich:Luftfahrt, Raumfahrt und Verkehr
HGF - Programm:Luftfahrt
HGF - Programmthema:Luftverkehrsmanagement und Flugbetrieb
DLR - Schwerpunkt:Luftfahrt
DLR - Forschungsgebiet:L AO - Air Traffic Management and Operation
DLR - Teilgebiet (Projekt, Vorhaben):L - Klima, Wetter und Umwelt (alt)
Standort: Oberpfaffenhofen
Institute & Einrichtungen:Institut für Physik der Atmosphäre
Hinterlegt von: Schumann, Prof.Dr.habil. Ulrich
Hinterlegt am:24 Aug 2020 08:11
Letzte Änderung:18 Nov 2020 04:23

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