Photovoltaic Land Area Converted into Aviation Fuel and Passenger Flight Performance
DOI:
https://doi.org/10.31224/8463Keywords:
aviation, airplane, passenger, airport, fuel, kerosene, Power-to-Liquid, PtL, photovoltaics, PV, electricity, rooftop, ground-mounted, air traffic, movement, take-off, departure, landing, obstacle clearance, protection zone, safety area, glare effectAbstract
Purpose – Show with three simple example calculations the effect that photovoltaic (PV) energy production can have on commercial flight operations. Considered is rooftop PV, normal ground-mounted PV, and ground-mounted PV at airports. --- Methodology – Calculations are based on first principles, common parameters, and statistics. --- Findings – The result highlights the extremely high energy needs of commercial aviation relative to the renewable-energy yield of land by means of PV. The conclusion is not that airport-associated PV is unimportant. On the contrary, PV can contribute meaningfully to airport energy supply and synthetic-fuel production for aircraft operation. However: The calculation shows that even comparatively large PV areas that airports could offer correspond to only a small fraction (e.g. 1%) of the fuel demand created by commercial flight operations at the airport.
Downloads
Downloads
Posted
License
Copyright (c) 2026 Dieter Scholz

This work is licensed under a Creative Commons Attribution 4.0 International License.