Universal modeling and simulation of fluid mechanics upon machine learning. From the Boltzmann equation, heading towards multiscale and multiphysics flows.
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Updated
Oct 20, 2024 - Julia
Universal modeling and simulation of fluid mechanics upon machine learning. From the Boltzmann equation, heading towards multiscale and multiphysics flows.
Automatic-Differentiation-Enabled Plasma Transport in JAX
A high performance framework for radiation therapy simulation and numerical solutions for kinetic equations.
A simple method to solve spherical harmonics moment systems, such as the the time-dependent PN and SPN equations, of radiative transfer in 1D-3D geometry.
XTANT-3: X-ray-induced Thermal And Nonthermal Transitions
Implementation of the Revised Enskog Theory for Mie fluids (RET-Mie) for computation of diffusion coefficients, thermal diffusion coefficients, viscosity and thermal conductivity
Restructure single parabolic band(SPB) model used for thermoelectricity
A finite volume-based LBM solver is developed and verified using canonical flow problems
Freeze-out mechanism and relic abundance computation for WIMPs and inelastic Dark Matter.
Flux-reconstructed discontinuous Galerkin schemes for Boltzmann equation and related kinetic models
Ab initio model for mobility and conductivity calculation by using Rode Algorithm
Simplified Models and subHalos distributions
Boltzmann equation implementation of freeze-out singlet scalar dark matter
Stochastic Solution Method of the Master Equation and the Model Boltzmann Equation
Exact numerical implementation of the background (i.e., 1D) collisional Boltzmann equation for DM-baryon elastic scattering. Code used to generate results presented in S. Seher Gandhi & Y. Ali-Haïmoud (2022) [arXiv:2205.05536]. Please cite our paper if you use this code in whole or in part.
Simulation of a self-interacting fluid using a Lattice-Boltzmann method in Julia. For now, it is collisionless.
Generalized 2D phonon transport using a Monte Carlo method
An implementation of the DSMC-Boltzmann algorithm in several versions for the simulation of the heat transfer due to phonons in electrically non conducting samples.
Modeling of radiative and quantum electrodynamics effects in PIC simulations of ultra-relativistic laser-plasma interaction
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