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◆ Journal of Aircraft2026-05-01· Aileron

Active Flow Control for Enhanced High-Lift Aileron Effectiveness

Arvin Shmilovich, Yoram Yadlin, Paul M. Vijgen, René Woszidlo

原始摘要(英文原文)· Original abstract
Active flow control was applied to the ailerons of a representative future short/medium-range twin-engine airplane to improve aerodynamic performance during high-lift operations. The study is aimed at reduced drag and enhanced lift over the range of practical angles of attack, including stall. These benefits translate to airplane performance improvements, such as longer range or larger payload. Various flow control techniques were explored using Computational Fluid Dynamics and the aerodynamic performance enhancements were benchmarked against the baseline configuration. The computational analyses are used to quantify aerodynamic benefits, as well as the input required for actuation. The results were used in a system integration study for identifying potential practical implementations, which are described in a companion paper. Combined with the integration analysis, the objective of this project is to identify the most promising flow control candidates that potentially provide material net airplane level enhancements using onboard fluidic sources. The current study indicates that up to 5% net improvement in lift-to-drag ratio (L/D) at takeoff is potentially achievable using active flow control on the aileron, after accounting for factors of system integration.
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