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◆ Fluids2025-10-23· Rudder

Experimental Study on the Effects of Sideslip and Rudder Deflection Angles on the Aerodynamics of an Aircraft Vertical Tail at Low Speeds

Arash Shams Taleghani, Saeid Yektaei, Vahid Esfahanian, Soheila Abdolahipour

原始摘要(英文原文)· Original abstract
The vertical tail plays a crucial role in aircraft directional stability and lateral control, especially during low-speed operations such as takeoff and landing. This study examines the effect of aircraft mass on vertical tail geometry through a statistical analysis of 65 design parameters from civil jet aircraft. Aerodynamic performance of a sub-scale Boeing 777-200 vertical tail model was further investigated in a low-speed wind tunnel under rudder deflections and sideslip angles. Experiments were conducted at freestream speeds of 20 and 30 m/s, corresponding to Reynolds numbers of 5 × 105 and 7.5 × 105, with model blockage ratios below 2% in all configurations. Side force and drag coefficients were measured for rudder deflections from −30° to +30° and sideslip angles from −7.5° to +7.5°. Results show a nearly linear variation of side force with rudder deflection, while drag exhibits noticeable nonlinearity at higher deflections. At zero sideslip, increasing rudder deflection from 0° to 30° raised the side force coefficient from 0 to 0.65, with a maximum uncertainty of ±0.011, while drag coefficient uncertainty remained below ±0.0055. Furthermore, the application of positive or negative sideslip resulted in substantial variations in the side force coefficient, reaching values of up to ±1.1 depending on the direction. By integrating experimental data with statistical analysis of real aircraft geometries, this study provides reliable quantitative benchmarks and highlights the vertical tail’s aerodynamic importance.
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Experimental Study on the Effects of Sideslip and Rudder Deflection Angles on the Aerodynamics of an Aircraft Vertical Tail at Low Speeds — 科研速览 Science Skim