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    Relationship between the pressure at the casing wall and at the blade tip for a vibrating turbine blade

    154038_26724_Alshroof_PaperNumber389.pdf (540.7Kb)
    Access Status
    Open access
    Authors
    Alshroof, O.
    Forbes, Gareth
    Randall, R.
    Date
    2010
    Type
    Conference Paper
    
    Metadata
    Show full item record
    Citation
    Alshroof, Osama N. and Forbes, Gareth L. and Randall, Robert B. 2010. Relationship between the pressure at the casing wall and at the blade tip for a vibrating turbine blade, in Mallinson, G.D. and Cater, J.E. (ed), 17th Australasian Fluid Mechanics Conference, Dec 5 2010. Auckland, New Zealand: Australasian Fluid Mechanics Society.
    Source Title
    Proceedings of the 17th Australasian Fluid Mechanics Conference
    Source Conference
    17th Australasian Fluid Mechanics Conference
    ISBN
    978-0-86869-129-9
    School
    Department of Mechanical Engineering
    URI
    http://hdl.handle.net/20.500.11937/38931
    Collection
    • Curtin Research Publications
    Abstract

    A recent research program has identified the possibility of using the analysis of casing wall pressures in the indirect measurement of gas turbine rotor blade vibration amplitudes [1]. Analytical modelling of the casing wall pressures and reconstruction of rotor blade vibration amplitudes from the analysis of these simulated pressure signals have shown potential advantages over current non-contact rotor blade vibration measurement methods. However, the modelling made some fundamental assumptions about the casing wall pressure. One of the assumptions made was that the pressure at the blade tip is not significantly different from that measured across the clearance gap at the casing wall. This fluid-structure hypothesis is investigated in this paper. Unsteady computational fluid dynamic modelling of the flow conditions around the blade surface, combined with the blade structural motion, is performed numerically, and the distributions of the pressure across the rotor blade tip and casing clearance gap are investigated and reported.

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    • Fluid-structure interaction study of gas turbine blade vibrations
      Forbes, Gareth; Alshroof, O.; Randall, R. (2011)
      A recent research program has identified the possibility of using the analysis of casing wall pressures in the direct measurement of gas turbine rotor blade vibration amplitudes. Currently the dominant method of non-contact ...
    • Fluid-structure interaction study of gas turbine blade vibrations
      Forbes, Gareth; Alshroof, O.; Randall, R. (2010)
      A recent research program has identified the possibility of using the analysis of casing wall pressures in the direct measurement of gas turbine rotor blade vibration amplitudes.Currently the dominant method of non-contact ...
    • Estimation of Turbine Blade Natural Frequencies from Casing Pressure and Vibration Measurements
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      Non-contact measurement of gas turbine rotor blade vibration is a non-trivial task, with no method available which achieves this aim without some significant draw-backs. This paper presents a truly non-contact method to ...
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