Understanding the shock and detonation response of high explosives at the continuum and meso scales

被引:170
作者
Handley, C. A. [1 ]
Lambourn, B. D. [1 ]
Whitworth, N. J. [1 ]
James, H. R. [1 ]
Belfield, W. J. [1 ]
机构
[1] AWE, Reading RG7 4PR, Berks, England
来源
APPLIED PHYSICS REVIEWS | 2018年 / 5卷 / 01期
关键词
SPOT IGNITION MECHANISMS; EQUATION-OF-STATE; PERTURBATION-THEORY; HETEROGENEOUS EXPLOSIVES; THERMAL-EXPLOSION; HOT-SPOTS; INITIATION; HMX; GROWTH; MODEL;
D O I
10.1063/1.5005997
中图分类号
O59 [应用物理学];
学科分类号
摘要
The shock and detonation response of high explosives has been an active research topic for more than a century. In recent years, high quality data from experiments using embedded gauges and other diagnostic techniques have inspired the development of a range of new high-fidelity computer models for explosives. The experiments and models have led to new insights, both at the continuum scale applicable to most shock and detonation experiments, and at the mesoscale relevant to hotspots and burning within explosive microstructures. This article reviews the continuum and mesoscale models, and their application to explosive phenomena, gaining insights to aid future model development and improved understanding of the physics of shock initiation and detonation propagation. In particular, it is argued that " desensitization" and the effect of porosity on high explosives can both be explained by the combined effect of thermodynamics and hydrodynamics, rather than the traditional hotspot-based explanations linked to pressure-dependent reaction rates.
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页数:65
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