With the development of urban air mobility, the safety of multirotor vehicle operations in proximity to vertiports must be assessed. This paper examines high-fidelity blade-resolved OVERFLOW simulations and medium-fidelity vortex particle-mesh simulations that capture the aerodynamics of a rotorcraft in full and partial ground effect. Results obtained with each CFD method are compared to verify the consistency of the models introduced in the latter, which include an immersed lifting line for the blade aerodynamics and various boundary conditions to account for solid surfaces such as ground and walls. Satisfactory agreement is obtained for the blade loads and rotorwash velocity profiles in the case of a single rotor, except for small discrepancies at the blade tip. Finally, a quadrotor air taxi is simulated to quantify the load imbalance when the vehicle hovers above a rooftop edge. The combined use of high- and medium-fidelity methods is envisioned to accelerate the workflow when a large number of configurations need to be tested.
Affiliations
National Aeronautics and Space AdministrationAmes Research Center
Caprace, D.-G., Ventura Diaz, P., & Yoon, S. (2023). Simulation of a Quadrotor Urban Air Taxi Hovering Above a Rooftop Edge. Proceedings of the AIAA Aviation 2023 Forum. Published. AIAA AVIATION 2023 Forum, San Diego, CA and Online. https://doi.org/10.2514/6.2023-4281