Two-Phase Flow Analysis of Unstable Fluid Mixing in 1D Geometry

نویسندگان

  • David Saltz
  • Wonsuck Lee
چکیده

A two-phase ow model for an acceleration-driven compressible uid mixing layer is applied to an initially planar/cylindrical/spherical uid connguration. A conservative form of the one-dimensional compressible equations is derived under the assumption that the uid concentration is continuous. With a hyperbolic conservation law for the concentration gradient, the model supports traveling discontinuities in this quantity. The primary examples of this wave type are the moving boundaries of a nite mixing layer, which determine the instability growth rate. Constitutive laws for interfacial averages, previously derived for planar incompressible mixing, are re-interpreted and shown to be applicable to other one-dimensional mixing problems of interest. The equations of motion for an incompress-ible mixing layer in planar, cylindrical, or spherical geometry are solved exactly, up to a history integral of a function of the edge trajectories, and without assuming incompressible ow outside the layer. Full solutions are obtained by numerically integrating a coupled system of ordinary diierential equations for the volume fraction characteristics. Results for self-similar Rayleigh-Taylor mixing in planar geometry are compared to the work of others. This comparison suggests that the shape of the uid concentration proole is primarily a consequence of mass conservation, parameterized by the expansion ratio of the mixing zone edges.

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تاریخ انتشار 1999