Campaign 2 Level 2 Milestone Review 2009: Milestone # 3131 Grain Scale Simulation of Pore Collapse
[摘要] The milestone reviewed on Sept. 16, 2009 was 'High-fidelity simulation of shock initiation of high explosives at the grain scale using coupled hydrodynamics, thermal transport and chemistry'. It is the opinion of the committee that the team has satisfied the milestone. A detailed description of how the goals were met is provided. The milestone leveraged capabilities from ASC Physics and Engineering Materials program combined with experimental input from Campaign 2. A combined experimental-multiscale simulation approach was used to create and validate the various TATB model components. At the lowest length scale, quantum chemical calculations were used to determine equations of state, thermal transport properties and reaction rates for TATB as it is decomposing. High-pressure experiments conducted in diamond anvil cells, gas guns and the Z machine were used to validate the EOS, thermal conductivity, specific heat and predictions of water formation. The predicted reaction networks and chemical kinetic equations were implemented in Cheetah and validated against the lower length scale data. Cheetah was then used within the ASC code ALE3D for high-resolution, thermo-mechanically coupled simulations of pore collapse at the micron size scale to predict conditions for detonation initiation.
[发布日期] 2009-09-28 [发布机构]
[效力级别] [学科分类] 化学(综合)
[关键词] CHEMICAL EXPLOSIVES;CHEMISTRY;DIAMONDS;EQUATIONS OF STATE;EXPLOSIONS;HYDRODYNAMICS;KINETIC EQUATIONS;PHYSICS;REACTION KINETICS;SIMULATION;SPECIFIC HEAT;TATB;THERMAL CONDUCTIVITY;TRANSPORT;WATER [时效性]