@inproceedings{634e0aa50e0a4dd788131ed9e9369133,
title = "Improved Compressor Performance Prediction Using a Vortex-Reactive Turbulence-Model Extension",
abstract = "The accurate modelling of secondary-flow dynamics is a key aspect of reliable performance predictions for turbomachinery. This is due to the effect of secondary flow on the aerofoil boundary layers, as well as the overall energy budget. In this paper, we assess the predictive performance of a vortex-reactive turbulence-model extension using integral performance data of a multi-stage compressor test rig. The model extension provides a more accurate prediction of multi-stage compressor characteristics, especially if cavities and squealer tips are considered. This is achieved by mitigating an underprediction of near-choke mass-flow rates, and of the total-pressure ratio and isentropic efficiency near stall. The analysis shows that this is achieved by affecting the formation and propagation of secondary flow.",
keywords = "axial compressor, rotational effects, secondary flow, Turbulence modelling",
author = "Dajan Mimic and Janek Mahlstedt and Florian Herbst",
note = "Publisher Copyright: Copyright {\textcopyright} 2024 by ASME.; 69th ASME Turbo Expo 2024: Turbomachinery Technical Conference and Exposition, GT 2024 ; Conference date: 24-06-2024 Through 28-06-2024",
year = "2024",
month = aug,
day = "28",
doi = "10.1115/GT2024-129179",
language = "English",
series = "Proceedings of the ASME Turbo Expo",
publisher = "American Society of Mechanical Engineers(ASME)",
booktitle = "Turbomachinery",
address = "United States",
}