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Discretized Miller approach to assess effects on boundary layer ingestion induced distortion
Authors:Esteban Valencia  Victor Hidalgo  Devaiah Nalianda  Laskaridis Panagiotis  Riti Singh
Institution:1. Departamento de Ingeniería Mecánica, Facultad de Ingeniería Mecánica, Escuela Politécnica Nacional, Ladron de Guevara E11-253, Quito 17-01-2759, Ecuador;2. School of Engineering, Cranfield University, Bedford MK430AL, United Kingdom
Abstract:The performance of propulsion configurations with boundary layer ingestion (BLI) is affected to a large extent by the level of distortion in the inlet flow field. Through flow methods and parallel compressor have been used in the past to calculate the effects of this aerodynamic inte-gration issue on the fan performance;however high-fidelity through flow methods are computation-ally expensive, which limits their use at preliminary design stage. On the other hand, parallel compressor has been developed to assess only circumferential distortion. This paper introduces a discretized semi-empirical performance method, which uses empirical correlations for blade and performance calculations. This tool discretizes the inlet region in radial and circumferential direc-tions enabling the assessment of deterioration in fan performance caused by the combined effect of both distortion patterns. This paper initially studies the accuracy and suitability of the semi-empirical discretized method by comparing its predictions with CFD and experimental data for a baseline case working under distorted and undistorted conditions. Then a test case is examined, which corresponds to the propulsor fan of a distributed propulsion system with BLI. The results obtained from the validation study show a good agreement with the experimental and CFD results under design point conditions.
Keywords:BLI  Correlations  Distortion  Embedded propulsors  Empirical  Mean-line analysis  Turbomachinery
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