Loughborough University
Browse
2009-Large-eddy.pdf (1.78 MB)

Large eddy simulation of a complete harrier aircraft in ground effect

Download (1.78 MB)
journal contribution
posted on 2012-03-21, 14:56 authored by Gary PageGary Page, Jim McGuirk
This paper aims to demonstrate the viability of using the large eddy simulation (LES) CFD methodology to model a representative, complete STOVL aircraft geometry at touch down. The flowfield beneath such a jet-borne vertical landing aircraft is inherently unsteady. Hence, it is argued in the present work that the LES technique is the most suitable tool to predict both the mean flow and unsteady fluctuations. and, with further development and validation testing, this approach could be a replacement, and certainly a complementary aid, to expensive rig programmes. The numerical method uses a compressible solver on a mixed element unstructured mesh. Examination of instantaneous flowfield predictions from these LES calculations indicate close similarity with many flow features identified from ground effect flow visualisations, which are well known to be difficult to model using RANS-based CFD. Whilst significant further work needs to be carried out, these calculations show that LES could be a practical tool to model, for example, Hot Gas Ingestion for the Joint Strike Fighter aircraft.

History

School

  • Aeronautical, Automotive, Chemical and Materials Engineering

Department

  • Aeronautical and Automotive Engineering

Citation

PAGE, G.J. and MCGUIRK, J.J., 2009. Large eddy simulation of a complete harrier aircraft in ground effect. The Aeronautical Journal, 113 (1140), pp. 99 - 106.

Publisher

© Royal Aeronautical Society

Version

  • VoR (Version of Record)

Publication date

2009

Notes

This article was published in The Aeronautical Journal [© Royal Aeronautical Society].

ISSN

0001-9240

Language

  • en

Usage metrics

    Loughborough Publications

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC