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Ignition and detonation of solid explosives: a micromechanical burn model

机译:固体炸药的点火和爆轰:微机械燃烧模型

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摘要

This paper describes a new computational framework for modeling splid explosives and proof-of-concept calculations. Our goal is to expand predictive model capability through the inclusion of various micro-mechanical burn processes. We propose a model which is complicated enough to represent underlying physics, but simple enough for engineering scale computations. Key components of the model include energy localization, the growth of hot spots, micro-mechanics in/around hot spots, and a phase-averaged mixture equation of state. The nucleation and growth of locally heated regions is treated by a statistical model based on an exponential size distribution. Proof-of-concept calculations are limited to shock loading, but show the capability of simulating Pop-plots, initial temperature effect, detonation waves in 2D, detonation shock confinement test, and multi-dimensional effects in a unified fashion based on micro-physics.
机译:本文介绍了一种用于建模爆炸物和概念验证计算的新计算框架。我们的目标是通过包含各种微机械燃烧过程来扩展预测模型的能力。我们提出了一个模型,该模型足够复杂以表示基础物理学,但对于工程规模计算却足够简单。该模型的关键组成部分包括能量局部化,热点的增长,热点内部/周围的微力学以及状态平均混合状态方程。通过基于指数大小分布的统计模型处理局部加热区域的形核和生长。概念验证的计算仅限于冲击载荷,但是显示了基于微观物理学以统一的方式模拟Pop-Plot,初始温度效应,2D爆轰波,爆轰冲击约束试验和多维效应的能力。 。

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