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A new body force-based modelling approach for turbomachinery aerodynamics: formulation, verification and implementation aspects

dc.contributor.authorLamprakis, Dimitrios
dc.contributor.authorRighi, Mauro
dc.contributor.authorPachidis, Vassilios
dc.date.accessioned2026-01-19T14:31:39Z
dc.date.available2026-01-19T14:31:39Z
dc.date.freetoread2026-01-19
dc.date.issued2025-06-16
dc.date.pubOnline2025-08-11
dc.descriptionCopyright © 2025 by Rolls-Royce plc.
dc.description.abstractModelling of turbomachinery flows typically entails singlepassage or full annulus RANS and uRANS simulations. The computational and numerical stability challenges associated primarily with transient simulations of multi-stage and coupled turbo-machinery components may offset their accuracy benefits. Body force modelling provides a reasonable trade-off between computational efficiency and accuracy, replacing the turbomachinery component with a body force field. In the present work, a new body force-based modelling approach is presented, comprising body force-relevant grids, an inviscid compressible solver in the relative frame of reference with metal and aerodynamic blockage and a new body force model comprising a base turning, correction and viscous force component. Distribution coefficients are introduced, mathematically replicating the spatial distribution of key quantities such as loss and flow deviation using custom functions or CFD data. The proposed approach is sufficiently comprehensive to enable its applicability to all types of compressor and potentially turbine blades, while minimising dependence on CFD input. The validity and limitations of the proposed approach are assessed through numerical response test cases. Subsidiary force components and loss mechanisms, associated with abrupt flow turning and blockage effects are captured. Considerations and modelling aspects regarding grid sensitivity, blockage, the solver and the effect of distribution coefficients on compressor performance are analysed and quantified. Limitations associated with the grid topology, body forces and blockage modelling are partially or fully addressed. The paper aims to provide an in-depth analysis in fundamental aspects of body force modelling approaches, while unveiling obscure aspects and limitations underpinning most body force modelling approaches. A new approach is proposed to mitigate the shortcomings of previous methods.
dc.description.conferencenameASME Turbo Expo 2025: Turbomachinery Technical Conference and Exposition
dc.description.sponsorshipThe authors would like to thank Rolls-Royce plc. for supporting this work.
dc.identifier.citationLamprakis D, Righi M, Pachidis V. (2025) A new body force-based modelling approach for turbomachinery aerodynamics: formulation, verification and implementation aspects. In: Proceeding of the ASME Turbo Expo 2025: Turbomachinery Technical Conference and Exposition, 16-20 Jun 2025, Memphis, Tennessee, USA, Volume 11: Turbomachinery — Deposition, Erosion, Fouling, and Icing; Design Methods & CFD Modeling for Turbomachinery; Ducts, Noise & Component Interactions, Article number GT2025-153775en_UK
dc.identifier.elementsID862928
dc.identifier.isbn978-0-7918-8887-2
dc.identifier.paperNoGT2025-153775
dc.identifier.urihttps://doi.org/10.1115/gt2025-153775
dc.identifier.urihttps://dspace.lib.cranfield.ac.uk/handle/1826/24827
dc.identifier.volumeNo11
dc.language.isoen
dc.publisherAmerican Society of Mechanical Engineers (ASME)en_UK
dc.publisher.urihttps://asmedigitalcollection.asme.org/GT/proceedings/GT2025/88872/V011T32A028/1220766
dc.rightsAttribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectBody forceen_UK
dc.subjectdistribution coefficienten_UK
dc.subjectsubsidiary forcesen_UK
dc.subjectthrough-flowen_UK
dc.subjectblockageen_UK
dc.subjectturbomachineryen_UK
dc.subjectRANSen_UK
dc.subjectCFDen_UK
dc.subject4012 Fluid Mechanics and Thermal Engineeringen_UK
dc.subject40 Engineeringen_UK
dc.titleA new body force-based modelling approach for turbomachinery aerodynamics: formulation, verification and implementation aspectsen_UK
dc.typeConference paper
dcterms.coverageMemphis, Tennessee, USA
dcterms.temporal.endDate20 Jun 2025
dcterms.temporal.startDate16 Jun 2025

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