Constrained optimization framework for interface-aware sub-scale dynamics models for voids closure in Lagrangian hydrodynamics

Author:

Barlow Andrew,Klima Matej,Shashkov Mikhail

Funder

National Nuclear Security Administration of the US Department of Energy

Los Alamos National Laboratory

US Department of Energy Office of Science Advanced Scientific Computing Research (ASCR) Program in Applied Mathematics Research

US Department of Energy National Nuclear Security Administration Advanced Simulation and Computing (ASC) Program

Czech Technical University

Czech Science Foundation

Czech Ministry of Education

Publisher

Elsevier BV

Subject

Computer Science Applications,Physics and Astronomy (miscellaneous),Applied Mathematics,Computational Mathematics,Modelling and Simulation,Numerical Analysis

Reference25 articles.

1. Multi-material interface reconstruction on generalized polyhedral meshes;Ahn;J. Comput. Phys.,2007

2. An Application of the Jet Formation Theory to a 105 mm Shaped Charge;Allison,1962

3. Constrained optimization framework for interface-aware sub-scale dynamics closure model for multimaterial cells in Lagrangian and arbitrary Lagrangian Eulerian hydrodynamics;Barlow;J. Comput. Phys.,2014

4. Arbitrary Lagrangian–Eulerian methods for modeling high-speed compressible multimaterial flows;Barlow;J. Comput. Phys.,2016

5. A. Barlow, M. Klima, M. Shashkov, Constrained Optimization Framework for Interface-Aware Sub-Scale Dynamics Closure Models with Voids for Multimaterial Cells in Lagrangian Hydrodynamics, Technical Report of Los Alamos National Laboratory, LA-UR-17-28814. Available at https://www.researchgate.net/publication/321136813.

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