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    Modeling of viscous flows in two-dimensional turbomachinery cascade via viscous-inviscid interaction method

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    014-020_viscous Inviscid.pdf (1.652Mb)
    Date
    2005-09
    Author
    Mohd Zambri, Yusoff, Dr.
    Ibrahim, Hussein, Prof. Dr.
    Talal, Yusaf, Dr.
    Zulkifli, Ahmad
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    Abstract
    A two-dimensional time-accurate time-marching viscous flow solver employing the viscous-inviscid interaction method suitable for turbomachinery applications is described. The inviscid main flow solver uses the second-order accurate cellvertex finite-volume spatial discretisation and fourth-order accurate Runge-Kutta temporal integration. The viscous effect due to boundary layer development on the blade surfaces and wakes are modelled using an independent one-dimensional boundary layer subroutine capable of modelling laminar, transition and fully turbulent flows. The solver has been applied to subsonic, transonic and supersonic flow in a cascade of nozzle blades. The results are compared with the experimental data and they showed very good agreement.
    URI
    http://www.myiem.org.my/content/iem_journal_2005-176.aspx
    http://dspace.unimap.edu.my/123456789/13546
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