Computational Aerodynamics Study of the Lift+Cruise VTOL Concept Vehicle Components

SM-2024-TVF-5075

2/6/2024

Authors
Abstract
Content

This paper describes a building-block approach for high-fidelity computational fluid dynamic simulations of NASA's Lift+Cruise (L+C) Vertical Take-off and Landing (VTOL) concept vehicle. The Reynolds-Averaged Navier-Stokes (RANS) equations are solved on overset structured grids using OVERFLOW. For these analyses, overset meshes are generated using recently developed automated meshing tools. A baseline study is initially performed on the vehicle fuselage with wings and tails. Vehicle components such as pylons and gears are then added individually and together to study incremental component aerodynamic effects. The results from this study are also used to demonstrate the capabilities of the automatic meshing tools for performing rapid computational analyses.

Meta TagsDetails
DOI
https://doi.org/10.4050/SM-2024-TVF-5075
Citation
Hosseini, S., Chuen, A., and Chan, W., "Computational Aerodynamics Study of the Lift+Cruise VTOL Concept Vehicle Components," Sixth Decennial VFS Aeromechanics Specialists Conference, Santa Clara, California, Feb 2024, Santa Clara, California, February 6, 2024, https://doi.org/10.4050/SM-2024-TVF-5075.
Additional Details
Publisher
Published
2/6/2024
Product Code
SM-2024-TVF-5075
Content Type
Technical Paper
Language
English