A kinetic scheme for unsteady pressurised flows in closed water pipes

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The aim of this paper is to present a kinetic numerical scheme for the computations of transient pressurised flows in closed water pipes. Firstly, we detail the mathematical model written as a conservative hyperbolic partial differentiel system of equations, and then we recall how to obtain the corresponding kinetic formulation. Then we build the kinetic scheme ensuring an upwinding of the source term due to the topography performed in a close manner described by Perthame and Simeoni (2001) [1] and Botchorishvili et al. (2003) [2] using an energetic balance at microscopic level. The validation is lastly performed in the case of a water hammer in an uniform pipe: we compare the numerical results provided by an industrial code used at EDF-CIH (France), which solves the Allievi equation (the commonly used equation for pressurised flows in pipes) by the method of characteristics, with those of the kinetic scheme. It appears that they are in a very good agreement.

论文关键词:Water transients in pipes,Pressurised flows,Saint-Venant like equations,Kinetic formulation,Kinetic scheme with reflections

论文评审过程:Received 3 September 2008, Revised 31 January 2009, Available online 15 August 2009.

论文官网地址:https://doi.org/10.1016/j.cam.2009.08.068