A micro-macro coupling approach of MD-SPH method for reactive energetic materials
Author(s) -
Gui Rong Liu,
Guang Yu Wang,
Qing Peng,
Suvranu De
Publication year - 2017
Publication title -
aip conference proceedings
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.177
H-Index - 75
eISSN - 1551-7616
pISSN - 0094-243X
DOI - 10.1063/1.4971540
Subject(s) - explosive material , energetic material , detonation , reaxff , equation of state , molecular dynamics , reactive material , macro , smoothed particle hydrodynamics , ignition system , macroscopic scale , statistical physics , mechanics , thermodynamics , physics , materials science , chemistry , computational chemistry , computer science , organic chemistry , interatomic potential , quantum mechanics , programming language , composite material
The simulation of reactive energetic materials has long been the interest of researchers because of the extensive applications of explosives. Much research has been done on the subject at macro scale in the past and research at micro scale has been initiated recently. Equation of state (EoS) is the relation between physical quantities (pressure, temperature, energy and volume) describing thermodynamic states of materials under a given set of conditions. It plays a significant role in determining the characteristics of energetic materials, including Chapman-Jouguet point and detonation velocity. Furthermore, EoS is the key to connect microscopic and macroscopic phenomenon when simulating the macro effects of an explosion. For instance, an ignition and growth model for high explosives uses two JWL EoSs, one for solid explosive and the other for gaseous products, which are often obtained from experiments that can be quite expensive and hazardous. Therefore, it is ideal to calculate the EoS of energetic mater...
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