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NASA Rotor 37

Chapter
Publication Date:
2021
Short description:
(2021). NASA Rotor 37 . Retrieved from http://hdl.handle.net/10446/191925
abstract:
The NASA Rotor 37 is an isolated transonic axial compressor rotor. This case was initially included in a wider research program to cover a range of design parameters typical of high pressure compressor inlet stage of aircraft engines. Most numerical studies fail at predicting with accuracy the overall performance, e.g., the adiabatic efficiency and the losses distribution downstream of the blade. This case presents indeed several phenomena which are challenging to capture: laminar-to-turbulent transition on the blade, interaction of the boundary layer with the shock, secondary and tip-leakage flows. If LES appears a more adequate tool than RANS to predict such inherently unsteady phenomena, it remains delicate, especially because wall modeling is required. This section presents results obtained by Safran and UniBG of WMLES using the Discontinuous Galerkin approach.
Iris type:
1.2.01 Contributi in volume (Capitoli o Saggi) - Book Chapters/Essays
List of contributors:
Mouriaux, Sophie; Bassi, Francesco; Colombo, Alessandro; Ghidoni, Antonio
Authors of the University:
COLOMBO Alessandro
Handle:
https://aisberg.unibg.it/handle/10446/191925
Book title:
TILDA: Towards Industrial LES/DNS in Aeronautics. Paving the Way for Future Accurate CFD - Results of the H2020 Research Project TILDA, Funded by the European Union, 2015 -2018
Published in:
NOTES ON NUMERICAL FLUID MECHANICS AND MULTIDISCIPLINARY DESIGN
Series
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Research

Concepts


Settore ING-IND/06 - Fluidodinamica
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