Predictions of the Structure of Turbulent, Moderately Underexpanded Jets

Author:

Cumber P. S.1,Fairweather M.1,Falle S. A. E. G.2,Giddings J. R.3

Affiliation:

1. British Gas plc, Research and Technology, Gas Research Centre, Loughborough LE11 3QU, England

2. Department of Applied Mathematics, The University of Leeds, Leeds LS2 9JT, England

3. Mantis Numerics Ltd., 46 The Calls, Leeds LS2 7EY, England

Abstract

A mathematical model capable of predicting the structure of turbulent, underexpanded jets is described. The model is based on solutions of the fluid flow equations obtained using a second-order accurate, finite-volume integration scheme coupled to an adaptive grid algorithm. Turbulence within these jets is modelled using a k-ε approach coupled to the compressible dissipation rate model of Sarkar et al. (1991a). Comparison of model predictions and experimental data, reported in the literature, on a number of moderately underexpanded jets demonstrate significant improvements over results derived using the standard k-ε approach, and the adequacy of the compressibility corrected turbulence model for predicting such jets.

Publisher

ASME International

Subject

Mechanical Engineering

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