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A discrete model for compressible flows in heterogeneous media
Authors:O. Le Métayer  A. Massol  N. Favrie  S. Hank
Affiliation:1. IUSTI, UMR CNRS 6595, Université Aix-Marseille I, Technopôle de Château Gombert, 5 Rue E. Fermi, 13453 Marseille Cedex 13, France;2. SMASH project, INRIA, 2004 route des Lucioles, 06902 Sophia Antipolis, France;3. AIRBUS Operations SAS, Coc Powerplant, EDET30, M0112/5, 316 Route de Bayonne, 31060 Toulouse Cedex 09, France
Abstract:This work deals with the building of a discrete model able to describe and to predict the evolution of complex gas flows in heterogeneous media. In many physical applications, large scales numerical simulation is no longer possible because of a lack of computing resources. Indeed the medium topology may be complex due to the presence of many obstacles (walls, pipes, equipments, geometric singularities etc.). Aircraft powerplant compartments are examples where topology is complex due to the presence of pipes, ducts, coolers and other equipment. Other important examples are gas explosions and large scale dispersion of hazardous materials in urban places, cities or underground involving obstacles such as buildings and various infrastructures. In all cases efficient safety responses are required. Then a new discrete model is built and solved in reasonable execution times for large cells volumes including such obstacles. Quantitative comparisons between experimental and numerical results are shown for different significant test cases, showing excellent agreement.
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