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The CREST reactive-burn model for explosives

机译:爆炸物的CREST反应燃烧模型

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CREST is an innovative reactive-burn model that has been developed at AWE for simulating shock initiation and detonation propagation behaviour in explosives. The model has a different basis from other reactive-burn models in that its reaction rate is independent of local flow variables behind the shock wave e.g. pressure and temperature. The foundation for CREST, based on a detailed analysis of data from particle-velocity gauge experiments, is that the reaction rate depends only on the local shock strength and the time since the shock passed. Since a measure of shock strength is the entropy of the non-reacted explosive, which remains constant behind a shock, CREST uses an entropy-dependent reaction rate. This paper will provide an overview of the CREST model and its predictive capability. In particular, it will be shown that the model can predict a wide range of experimental phenomena for both shock initiation (e.g. the effects of porosity and initial temperature on sustained-shock and thin-flyer initiation) and detonation propagation (e.g. the diameter effect curve and detonation failure cones) using a single set of coefficients.
机译:CREST是AWE开发的一种创新的反应燃烧模型,用于模拟爆炸物中的冲击起爆和爆炸传播行为。该模型与其他反应性燃烧模型具有不同的基础,因为其反应速率与冲击波后面的局部流量变量无关,例如压力和温度。 CREST的基础是对颗粒速度计实验数据的详细分析,其基础是反应速率仅取决于局部冲击强度和冲击通过后的时间。由于冲击强度的度量是未反应炸药的熵,在爆炸后仍保持恒定,因此CREST使用的是取决于熵的反应速率。本文将概述CREST模型及其预测能力。特别是,将显示该模型可以预测冲击引发(例如,孔隙率和初始温度对持续电击和稀薄飞行物引发的影响)和爆炸传播(例如直径效应曲线)的广泛实验现象。和爆震破坏锥)。

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