DOAJ Open Access 2024

UAV Icing: Aerodynamic Degradation Caused by Intercycle and Runback Ice Shapes on an RG-15 Airfoil

Joachim Wallisch Markus Lindner Øyvind Wiig Petersen Ingrid Neunaber Tania Bracchi +2 lainnya

Abstrak

Electrothermal de-icing systems are a popular approach to protect unmanned aerial vehicles (UAVs) from the performance degradation caused by in-cloud icing. However, their power and energy requirements must be minimized to make these systems viable for small and medium-sized fixed-wing UAVs. Thermal de-icing systems allow intercycle ice accretions and can result in runback icing. Intercycle and runback ice increase the aircraft’s drag, requiring more engine thrust and energy. This study investigates the aerodynamic influence of intercycle and runback ice on a typical UAV wing. Lift and drag coefficients from a wind tunnel campaign and Ansys FENSAP-ICE simulations are compared. Intercycle ice shapes result in a drag increase of approx. 50% for a realistic cruise angle of attack. While dispersed runback ice increases the drag by 30% compared to the clean wing, a spanwise ice ridge can increase the drag by more than 170%. The results highlight that runback ice can significantly influence the drag coefficient. Therefore, it is important to design the de-icing system and its operation sequence to minimize runback ice. Understanding the need to minimize runback ice helps in designing viable de-icing systems for UAVs.

Penulis (7)

J

Joachim Wallisch

M

Markus Lindner

Ø

Øyvind Wiig Petersen

I

Ingrid Neunaber

T

Tania Bracchi

R

R. Jason Hearst

R

Richard Hann

Format Sitasi

Wallisch, J., Lindner, M., Petersen, Ø.W., Neunaber, I., Bracchi, T., Hearst, R.J. et al. (2024). UAV Icing: Aerodynamic Degradation Caused by Intercycle and Runback Ice Shapes on an RG-15 Airfoil. https://doi.org/10.3390/drones8120775

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Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.3390/drones8120775
Akses
Open Access ✓