Interface-unaware sub-scale dynamics closure model for multimaterial cells in cell-centered arbitrary Lagrangian-Eulerian hydrodynamics
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Publication:2671409
DOI10.1016/j.jcp.2022.111295OpenAlexW4280622464MaRDI QIDQ2671409
Pei Wang, Zupeng Jia, Fang Qing, Jianzhen Qian
Publication date: 3 June 2022
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2022.111295
Basic methods in fluid mechanics (76Mxx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Compressible fluids and gas dynamics (76Nxx)
Uses Software
Cites Work
- Unnamed Item
- Constrained optimization framework for interface-aware sub-scale dynamics closure model for multimaterial cells in Lagrangian and arbitrary Lagrangian-Eulerian hydrodynamics
- A cell centred Lagrangian Godunov scheme for shock hydrodynamics
- A 2D unstructured multi-material Cell-Centered Arbitrary Lagrangian-Eulerian (CCALE) scheme using MOF interface reconstruction
- A five equation reduced model for compressible two-phase flow problems
- Arbitrary Lagrangian-Eulerian methods for modeling high-speed compressible multimaterial flows
- A high-order cell-centered Lagrangian scheme for compressible fluid flows in two-dimensional cylindrical geometry
- Reale: a Reconnection-based Arbitrary-Lagrangian-Eulerian method
- A two-dimensional unstructured cell-centered multi-material ALE scheme using VOF interface reconstruction
- Simple and efficient relaxation methods for interfaces separating compressible fluids, cavitating flows and shocks in multiphase mixtures
- Computational methods in Lagrangian and Eulerian hydrocodes
- The construction of compatible hydrodynamics algorithms utilizing conservation of total energy
- A mixture theory for contact in multi-material Eulerian formulations
- Multi-material ALE methods in unstructured grids
- Formulations of artificial viscosity for multi-dimensional shock wave computations
- A robust MoF method applicable to severely deformed polygonal mesh
- A cell-centered Lagrangian Godunov-like method for solid dynamics
- Multi-material hydrodynamics with algebraic sharp interface capturing
- A local tensor type artificial viscosity for two-dimensional Lagrangian staggered grid hydrodynamics
- Constrained optimization framework for interface-aware sub-scale dynamics discrete closure model for multimaterial cells in Lagrangian cell-centered hydrodynamics
- A comparative study of interface reconstruction methods for multi-material ALE simulations
- Constrained optimization framework for interface-aware sub-scale dynamics models for voids closure in Lagrangian hydrodynamics
- An effective integration of methods for second-order three-dimensional multi-material ALE method on unstructured hexahedral meshes using MOF interface reconstruction
- Contact in a multi-material Eulerian finite element formulation
- An interface-aware sub-scale dynamics multi-material cell model for solids with void closure and opening at all speeds
- High-Order Multi-Material ALE Hydrodynamics
- A comparative study of various pressure relaxation closure models for one‐dimensional two‐material Lagrangian hydrodynamics
- A Cell-Centered Lagrangian Scheme for Two-Dimensional Compressible Flow Problems
- On the dynamics of a shock–bubble interaction
- Achieving finite element mesh quality via optimization of the Jacobian matrix norm and associated quantities. Part I?a framework for surface mesh optimization
- A thermodynamic and dynamic subgrid closure model for two‐material cells
- A High-Order Cell-Centered Discontinuous Galerkin Multi-Material Arbitrary Lagrangian-Eulerian Method
- Closure models for multimaterial cells in arbitrary Lagrangian–Eulerian hydrocodes
- A simple algebraic interface capturing scheme using hyperbolic tangent function
- A Method for the Numerical Calculation of Hydrodynamic Shocks
- An arbitrary Lagrangian-Eulerian computing method for all flow speeds
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