XFOIL

XFOIL is an interactive program for the design and analysis of subsonic isolated airfoils. It consists of a collection of menu-driven routines which perform various useful functions such as: Viscous (or inviscid) analysis of an existing airfoil; Airfoil design and redesign by interactive modification of surface speed distributions, in two methods; Airfoil redesign by interactive modification of geometric parameters; Blending of airfoils; Writing and reading of airfoil coordinates and polar save files; Plotting of geometry, pressure distributions, and multiple polars


References in zbMATH (referenced in 64 articles )

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  1. Cai, Shang-Gui; Degrigny, Johan; Boussuge, Jean-François; Sagaut, Pierre: Coupling of turbulence wall models and immersed boundaries on Cartesian grids (2021)
  2. Gaifullin, A. M.; Khayrullin, K. G.; Sviridenko, Yu. N.: Designing an aerofoil with a Fowler flap using artificial neural networks (2021)
  3. Holman, Jiří; Fürst, Jiří: Numerical simulation of separation induced laminar to turbulent transition over an airfoil (2021)
  4. Joseph, Cibin; Mohan, Ranjith: A parallel, object-oriented framework for unsteady free-wake analysis of multi-rotor/wing systems (2021)
  5. Katsuno, Eduardo Tadashi; Lidtke, Artur K.; Düz, Bülent; Rijpkema, Douwe; Dantas, João L. D.; Vaz, Guilherme: Estimating parameter and discretization uncertainties using a laminar-turbulent transition model (2021)
  6. Krais, Nico; Beck, Andrea; Bolemann, Thomas; Frank, Hannes; Flad, David; Gassner, Gregor; Hindenlang, Florian; Hoffmann, Malte; Kuhn, Thomas; Sonntag, Matthias; Munz, Claus-Dieter: FLEXI: a high order discontinuous Galerkin framework for hyperbolic-parabolic conservation laws (2021)
  7. Onel, Huseyin C.; Tuncer, Ismail H.: Investigation of wind turbine wakes and wake recovery in a tandem configuration using actuator line model with LES (2021)
  8. Raposo, Henrique; Mughal, Shahid; Bensalah, Antoine; Ashworth, Richard: Acoustic-roughness receptivity in subsonic boundary-layer flows over aerofoils (2021)
  9. Zhou, Peng; Zhong, Siyang; Zhang, Xin: On the effect of velvet structures on trailing edge noise: experimental investigation and theoretical analysis (2021)
  10. Gunasekaran, M.; Mukherjee, Rinku: Aerodynamic analysis of wings in Chevron and V formation flights (2020)
  11. Gunasekaran, M.; Mukherjee, Rinku: Aerodynamic analysis of basic and extended lead-trail formation using numerical technique (2020)
  12. Liu, Xinqiang; He, Weiliang; Wei, Fengmei: Design of high altitude propeller using multilevel optimization (2020)
  13. Alon Tzezana, Gali; Breuer, Kenneth S.: Thrust, drag and wake structure in flapping compliant membrane wings (2019)
  14. Castorrini, Alessio; Corsini, Alessandro; Rispoli, Franco; Venturini, Paolo; Takizawa, Kenji; Tezduyar, Tayfun E.: Computational analysis of performance deterioration of a wind turbine blade strip subjected to environmental erosion (2019)
  15. Du, Weikang; Kinnas, Spyros A.: A flow separation model for hydrofoil, propeller and duct sections with blunt trailing edges (2019)
  16. Holman, Jiří; Fürst, Jiří: Coupling the algebraic model of bypass transition with EARSM model of turbulence (2019)
  17. Papadakis, George; Voutsinas, Spyros G.: A strongly coupled Eulerian Lagrangian method verified in 2D external compressible flows (2019)
  18. Salimipour, E.: A modification of the (k)-(k_L)-(\omega) turbulence model for simulation of short and long separation bubbles (2019)
  19. Sharma, Anupam; Visbal, Miguel: Numerical investigation of the effect of airfoil thickness on onset of dynamic stall (2019)
  20. Sun, Jian-Qiao; Xiong, Fu-Rui; Schütze, Oliver; Hernández, Carlos: Cell mapping methods. Algorithmic approaches and applications (2019)

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