M2C: An Open-Source Software for Multiphysics Simulation of Compressible Multi-Material Flows and Fluid-Structure Interactions
Xuning Zhao, Wentao Ma, Shafquat Islam, Aditya Narkhede, and Kevin Wang

TL;DR
M2C is an open-source multiphysics simulation software capable of modeling complex compressible multi-material flows and fluid-structure interactions under extreme conditions, integrating advanced physical models and high-performance computing techniques.
Contribution
The paper introduces M2C, a comprehensive open-source platform that combines multiphysics modeling, advanced interface tracking, and high-performance computing for simulating extreme flow phenomena.
Findings
Verified accuracy through benchmark cases.
Demonstrated multiphysics applications like laser-induced cavitation.
Achieved high computational performance with MPI parallelization.
Abstract
M2C (Multiphysics Modeling and Computation) is an open-source software for simulating multi-material fluid flows and fluid-structure interactions under extreme conditions, such as high pressures, high temperatures, shock waves, and large interface deformations. It employs a finite volume method to solve the compressible Navier-Stokes equations and supports a wide range of thermodynamic equations of state. M2C incorporates models of laser radiation and absorption, phase transition, and ionization, coupled with continuum dynamics. Multi-material interfaces are evolved using a level set method, while fluid-structure interfaces are tracked using an embedded boundary method. Advective fluxes across interfaces are computed using FIVER (FInite Volume method based on Exact multi-material Riemann problems). For two-way fluid-structure interaction, M2C is coupled with the open-source structural…
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