A reduced model for shock and detonation waves. I. The inert case
G. Stoltz
Abstract
We present a model of mesoparticles, very much in the Dissipative Particle Dynamics spirit, in which a molecule is replaced by a particle with an internal thermodynamic degree of freedom (temperature or energy). The model is shown to give quantitavely accurate results for the simulation of shock waves in a crystalline polymer, and opens the way to a reduced model of detonation waves.
Create a lesson
Related papers
Multi-image Overlap Stitching and Automatic Image Construction for Coherent X-ray Imaging
Starr Boney, Umeshika Dissanayaka, Lillian Rutowski et al.
Cryogenic Enhancement of Electron Spin Polarization from a Strained GaAs/GaAsP Superlattice Photocathode
Matt Grau, Colin Kirk, Greg Blume et al.
Size-Dependent Growth Rates Amplify Infinitesimal Asymmetry in Nanocrystals
Sam Oaks-Leaf, David T. Limmer
Magnetic frustration and non-collinear textures in layered Gd magnets
Vladislav Borisov, Rohit Pathak, Sagar Sarkar et al.
Fermi-Level Metal-d Character of Group-6 Bis-Hexahapto Bilayer Graphene
Mingguang Chen
Strain-Tunable Spin Relaxation in Germanium from First Principles
Lauren A. Tan, Shaelyn Iyer, Ivan Maliyov et al.