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Further experiments and analysis on flow instability in eccentric annular channels

POSTER

Abstract

Gap instability (GI), an inviscid, Kelvin-Helmholtz type, was investigated experimentally and numerically in an eccentric annular channel with an inner-to-outer diameter ratio $d/D=0.5$ and a length of 320 hydraulic diameters, under conditions not sufficiently documented in the literature, namely, low and moderate eccentricities ($02000$. A stability map was constructed and an improved physical model of the gap vortex street was proposed.

Authors

  • Marc-Etienne Lamarche-Gagnon

    Univ of Ottawa

  • Stavros Tavoularis

    Univ of Ottawa