A NOVEL SIMPLE-BASED PRESSURE-ENTHALPY COUPLING SCHEME FOR ENGINE FLOW PROBLEMS

Author:

Emans Maximilian1,Žunič Zoran2,Basara Branislav3,Frolov Sergey4

Affiliation:

1. Johann Radon Institute for Computational and Applied Mathematics Altenbergerstr. 69, 4040 Linz, Austria; Industrial Mathematics Competence Center (IMCC) Altenbergerstr. 69, 4040 Linz, Austria

2. AVL-AST d.o.o. Trg Leona Stuklja 5, 2000 Maribor, Slovenia

3. AVL List GmbH Hans-List-Platz 1, 8020 Graz, Austria

4. Semenov Institute of Chemical Physics 4 Kogosin street, 119991 Moscow, Russia

Abstract

A novel method in CFD derived from the SIMPLE algorithm is presented. Instead of solving the linear equations for each variable and the pressurecorrection equation separately in a so-called segregated manner, it relies on the solution of a linear system that comprises the discretisation of enthalpy and pressurecorrection equation which are linked through physical coupling terms. These coupling terms reflect a more accurate approximation of the density update with respect to thermodynamics (compared to standard SIMPLE method). We show that the novel method is a reasonable extension of existing CFD techniques for variable density flows based on SIMPLE. The novel method leads to a reduction of the number of iterations of SIMPLE which translates in many – but not in all – cases to a reduction in computing time. We will therefore demonstrate practical advantages and restrictions in terms of computational efficiency for industrial CFD applications in the field of piston engine simulations.

Publisher

Vilnius Gediminas Technical University

Subject

Modeling and Simulation,Analysis

Reference29 articles.

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