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Numerical study of wave propagation in compressible two‐phase flow
Authors:D Zeidan  E Romenski  A Slaouti  E F Toro
Institution:1. Department of Basic Sciences, Al‐Balqa Applied University, Al‐Salt, Jordan;2. Laboratory of Applied Mathematics, University of Trento, Trento, Italy;3. Department of Engineering and Technology, Manchester Metropolitan University, Manchester, U.K.
Abstract:We propose a new model and a solution method for two‐phase two‐fluid compressible flows. The model involves six equations obtained from conservation principles applied to a one‐dimensional flow of gas and liquid mixture completed by additional closure governing equations. The model is valid for pure fluids as well as for fluid mixtures. The system of partial differential equations with source terms is hyperbolic and has conservative form. Hyperbolicity is obtained using the principles of extended thermodynamics. Features of the model include the existence of real eigenvalues and a complete set of independent eigenvectors. Its numerical solution poses several difficulties. The model possesses a large number of acoustic and convective waves and it is not easy to upwind all of these accurately and simply. In this paper we use relatively modern shock‐capturing methods of a centred‐type such as the total variation diminishing (TVD) slope limiter centre (SLIC) scheme which solve these problems in a simple way and with good accuracy. Several numerical test problems are displayed in order to highlight the efficiency of the study we propose. The scheme provides reliable results, is able to compute strong shock waves and deals with complex equations of state. Copyright © 2006 John Wiley & Sons, Ltd.
Keywords:compressible two‐phase flow  extended thermodynamics  hyperbolic conservative two‐fluid model  TVD centred schemes
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