UCNS3d MRF testcases
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Silva, Paulo; Tsoutsanis, Panagiotis (2023). UCNS3d MRF testcases. Cranfield Online Research Data (CORD). Dataset. https://doi.org/10.17862/cranfield.rd.24271132
Abstract
This repository contains the Grids used as tescase on the UCNS3d for four helicopter cases:
- Caradonna and Tung (out of ground effect): The mesh files and results of the test case from section 4 used on the publication "Hovering rotor solutions by high-order methods on unstructured grids"
- Paint Sensitive Pressure rotor (out of ground effect): The periodic mesh files and results of the test case from section 5 used on the publication "Hovering rotor solutions by high-order methods on unstructured grids"
- Black Hawk 'UH-60a' (out of ground effect): The periodic mesh files and results of the test case from section 6 used on the publication "Hovering rotor solutions by high-order methods on unstructured grids"
- Caradonna and Tung (with and without ground effect): The mesh files and results of the test case used on the publication "Simple multiple reference frame for high-order solution of hovering rotors with and without ground effect"
- S-76 (with and without ground effect): The mesh files and results of the test case used on the publication "Simple multiple reference frame for high-order solution of hovering rotors with and without ground effect"
- Paint Sensitive Pressure full-helicopter (with and without ground effect): The periodic mesh files and results of the test case from section 5 used on the publication ["Numerical Investigation of full helicopter with and without the ground effect"](https://doi.org/10.1016/j.ast.2022.107401 and the Data underlying this study can be accessed through the Cranfield University repository. For this study we used the surface unstructured Blade grid downloaded at (https://www.aiaa-hpw.org/psp-rotor) and the robin fuselage geometry downloaded at (https://github.com/Applied-Scientific-Research/robin-surface-mesh) which changes accordingly to the mod7 geometry as exposed at (https://ntrs.nasa.gov/citations/20100033120).
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Keywords
'UCNS3D', 'Rotor', 'Helicopters', 'CFD'
DOI
10.17862/cranfield.rd.24271132
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CC BY 4.0
