Analysis of Gust and Snow on an Aircraft and Their Impact on Flight Safety
Student: SHUAIB AHMAD SHUAIB (Project, 2025)
Department of Aerospace Engineering
Air Force Institute of Technology (Degree), Kaduna, Kaduna State
Abstract
This study investigates the aerodynamic and structural effects of gust and snow conditions on
commercial aircraft, focusing on their impact on flight safety. Using the Boeing 737 as a case
study, the project examines how gust loads affect aircraft dynamics during critical flight phases
such as takeoff and landing, and how snow and associated icing degrade aerodynamic performance
and system functionality. Computational Fluid Dynamics (CFD) simulations were employed to
analyze the NACA B737 airfoil with and without winglets, evaluating pressure distribution, lift
and drag coefficients, and stall characteristics under varying angles of attack. Results indicate that
gusts lead to unsteady aerodynamic forces and control challenges, while snow introduces
significant risks through icing, increased drag, and reduced lift. The integration of gust load
alleviation and anti-icing mechanisms, coupled with adaptive control systems, is critical for
maintaining flight stability and safety. The study underscores the need for enhanced design,
simulation, and operational procedures to mitigate weather-induced flight hazards.
Keywords
For the full publication, please contact the author directly at: shuaibahmadshuaib2019@gmail.com
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Institutions
- Novena University, Ogume, Delta State 1
- Nuhu Bamalli Polytechnic, Zaria, Kaduna State 7
- Nwafor Orizu College of Education, Nsugbe, Anambra State 1
- Obafemi Awolowo University, Ile-Ife, Osun State 15
- Oduduwa University, Ipetumodu, Osun State 9
- Ogun State College of Health Technology, Ilese-Ijebu, Ogun State 1
- Ogun State Institute of Tech(formerly Gateway Ict Poly), Igbesa, Ogun State 4
- Olabisi Onabanjo University, Ago-Iwoye, Ogun State 37
- Ondo State University of Medical Sciences, Laje Road, Ondo, Ondo State 1
- Osun State College of Education, Ila-Orangun 1