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Extension of analytical indicial aerodynamics to generic trapezoidal wings in subsonic flow
Authors:Andrea DA RONCH  Antonino VENTURA  Marcello RIGHI  Matteo FRANCIOLINI  Marco BERCI  Daniel KHARLAMOV
Institution:1. Faculty of Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK;2. School of Engineering, Zurich University of Applied Sciences, Winterthur 8401, Switzerland;3. Dipartimento di Ingegneria Industriale e Scienze Matematiche, Università Politecnica delle Marche, Ancona I-60100, Italy;4. School of Mechanical Engineering, University of Leeds, Leeds LS2 9JT, UK
Abstract:Analytical indicial aerodynamic functions are calculated for several trapezoidal wings in subsonic flow, with a Mach number 0.3 Ma 0.7. The formulation herein proposed extends wellknown aerodynamic theories, which are limited to thin aerofoils in incompressible flow, to generic trapezoidal wing planforms. Firstly, a thorough study is executed to assess the accuracy and limitation of analytical predictions, using unsteady results from two state-of-the-art computational fluid dynamics solvers as cross-validated benchmarks. Indicial functions are calculated for a step change in the angle of attack and for a sharp-edge gust, each for four wing configurations and three Mach numbers. Then, analytical and computational indicial responses are used to predict dynamic derivatives and the maximum lift coefficient following an encounter with a one-minus-cosine gust. It is found that the analytical results are in excellent agreement with the computational results for all test cases. In particular, the deviation of the analytical results from the computational results is within the scatter or uncertainty in the data arising from using two computational fluid dynamics solvers. This indicates the usefulness of the developed analytical theories.
Keywords:Analytical approach  CFD  Compressible flow  Gust response  Indicial aerodynamics  Trapezoidal wing
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