An Open–Closed Flow Separation in a Compressor Radial Diffuser

Author:

Duquesne Pierre1,Dombard Jerome2,Poujol Nicolas1,Giauque Alexis1

Affiliation:

1. CNRS, Universite Claude Bernard Lyon 1 Ecole Centrale de Lyon, , INSA Lyon, LMFA, UMR5509, 69130 Ecully , France

2. CERFACS , 42 Avenue Gaspard Coriolis, Toulouse , France

Abstract

Abstract Large eddy simulations (LES) results are used to track flow separation zones in a splittered vaned radial diffuser near the compressor best efficiency at high rotation speed. The topology analysis reveals some closed separations at the corner of the blade and hub or shroud surface. In addition, an open–closed flow separation at the main blade pressure side is observed for the first time. The surface separation has the shape of a sheet at the blade mid-span, and the associated separation line is delimited only at its downstream extremity by a trailing edge node. This flow separation process is robust to a small shift in operating condition, and the separation surface remains essentially unchanged. A large flowrate variation converts the open–closed separation into a more classic closed separation. The evolution in time of the separation surface is also observed, and the authors conclude to the unsteady existence of the open–closed separation.

Publisher

ASME International

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