Sharp Interface Capturing in Compressible Multi-Material Flows with a Diffuse Interface Method
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作者:
Nandan, Shambhavi
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CEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, FranceCEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, France
Nandan, Shambhavi
[1
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Fochesato, Christophe
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CEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, FranceCEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, France
Fochesato, Christophe
[1
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Peybernes, Mathieu
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CEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, FranceCEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, France
Peybernes, Mathieu
[1
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Motte, Renaud
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CEA, DAM, DIF, F-91297 Arpajon, FranceCEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, France
Motte, Renaud
[2
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De Vuyst, Florian
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Sorbonne Univ, Lab Math Appl Compiegne EA 2222, Univ Technol Compiegne, F-60203 Compiegne, FranceCEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, France
De Vuyst, Florian
[3
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机构:
[1] CEA, DES, IRESNE, DTN, F-13108 Cadarache, St Paul Lez Dur, France
[2] CEA, DAM, DIF, F-91297 Arpajon, France
[3] Sorbonne Univ, Lab Math Appl Compiegne EA 2222, Univ Technol Compiegne, F-60203 Compiegne, France
Compressible multi-materialflows are encountered in a wide range of natural phenomena and industrial applications, such as supernova explosions in space, high speed flows in jet and rocket propulsion, underwater explosions, and vapor explosions in post accidental situations in nuclear reactors. In the numerical simulations of these flows, interfaces play a crucial role. A poor numerical resolution of the interfaces could make it difficult to account for the physics, such as material separation, location of the shocks and contact discontinuities, and transfer of the mass, momentum and heat between different materials/phases. Owing to such importance, sharp interface capturing remains an active area of research in the field of computational physics. To address this problem in this paper we focus on the Interface Capturing (IC) strategy, and thus we make use of a newly developed Diffuse Interface Method (DIM) called Multidimensional Limiting Process-Upper Bound (MLP-UB). Our analysis shows that this method is easy to implement, can deal with any number of material interfaces, and produces sharp, shape-preserving interfaces, along with their accurate interaction with the shocks. Numerical experiments show good results even with the use of coarse meshes.
机构:
Univ Nantes, Ecole Cent Nantes, UMR 6183, LUNAM Univ,CNRS,GeM, F-44321 Nantes 3, FranceUniv Nantes, Ecole Cent Nantes, UMR 6183, LUNAM Univ,CNRS,GeM, F-44321 Nantes 3, France
Friess, Marie Billaud
Kokh, Samuel
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机构:
CEA Saclay, USR 3441, Digiteo Labs, F-91191 Gif Sur Yvette, France
CEA Saclay, DEN, DANS, DM2S,STMF, F-91191 Gif Sur Yvette, FranceUniv Nantes, Ecole Cent Nantes, UMR 6183, LUNAM Univ,CNRS,GeM, F-44321 Nantes 3, France