Bibliographic Details
| Title: |
A MATLAB GUI-based approach to wing design and aerodynamic performance evaluation. |
| Authors: |
Sudhakar, Suhas Korodi1 (AUTHOR) suhas.s5@learner.manipal.edu, Krishna, Rohit1 (AUTHOR) rohit.krishna1@learner.manipal.edu, Agarwal, Kanak1 (AUTHOR) kanak.agarwal@learner.manipal.edu, Murugaiah, Manikandan1 (AUTHOR) manikandan.m@manipal.edu |
| Source: |
AIP Conference Proceedings. 2026, Vol. 3369 Issue 1, p1-7. 7p. |
| Subject Terms: |
*Airplane wing design, *Aerofoils, *Vortex methods, *Aerodynamics |
| Reviews & Products: |
MatLab (Computer software) |
| Abstract: |
This study presents a MATLAB® based application developed for the design and aerodynamic analysis of varying wing geometries using the NACA 4 and 5-digit series airfoils. It presents an innovative framework that enables the efficient generation of intricate wing surfaces, doing away with cumbersome and skill-intensive wing design using CAD software. Further, the framework can generate complex geometrical features such as twist, taper, and sweep. With meticulous attention to the user perspective and user-friendliness, special emphasis has been given to the position, color, and usability of elements within the interface. It integrates the horizontal wind model (HWM) routine developed by the U.S. Naval Research Laboratory. This reinforces its practical application by computing the wind speed using location and time-specific data. The XFOIL solver integrated into the framework uses this initial wind speed data to conduct an initial aerodynamic analysis using the vortex panel method. [ABSTRACT FROM AUTHOR] |
| Database: |
Academic Search Index |