[EN] This thesis calculates the aerodynamic coefficients and forces of the aircraft and refines
the mesh. From the given fuselage to the point with the complete aircraft with wings and
horizontal stabilizer, the program ...[+]
[EN] This thesis calculates the aerodynamic coefficients and forces of the aircraft and refines
the mesh. From the given fuselage to the point with the complete aircraft with wings and
horizontal stabilizer, the program used to mesh is ICEM CFD and to compare forces and
fluid dynamics interactions between air and body is used ANSYS Fluent®.
One of the objectives of the project is also the improvement of the quality of the given
mesh in order to obtain more accurate results. It is possible by changing distributions and
moving vertexes to avoid big jumps in the different zones of the mesh.
Related to ANSYS Fluent®, special attention is paid to the choice of the turbulence
models according to the best results in the previous calculations and to the geometry and
intended purpose. That is the reason for choosing the Shear Stress Transport k-omega.
The comparison between the configuration without wings and without horizontal stabilizer
with the complete configuration with those components confirms the expected difference
in lift and drag. The complexity of the mesh gives still the possibility to improve its
quality.
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