凝聚相炸药环弧爆轰传播

E. Ioannou, Stefan Schoch, N. Nikiforakis, L. Michael
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引用次数: 9

摘要

本文对环形弧(肋)形无约束炸药爆轰传播进行了数值研究。直装药的定常爆轰以恒速传播,但进入环空段后,经过一个过渡阶段,最终达到一个新的定常角速度状态。本研究考察了爆震波在过渡阶段和稳态时沿环空装药的速度,以及它与环空尺寸的依赖关系。该系统采用最近提出的扩散界面公式进行建模,该公式允许两相炸药和附加惰性材料的表示。所考虑的炸药是聚合物键合tatb基LX-17,并使用两个JWL状态方程和点火和生长反应速率定律进行建模。结果表明,稳态速度与实验结果吻合较好。在过渡阶段,外爆速的演化偏离了以往研究提出的指数有界增长函数。我们提出了一个新的过渡阶段的描述,它包括两个制度。第一种是由环外边缘的局部效应引起的,导致外爆速与沿弧的角位置有关。第二种状态是由源自环形装药内缘的效应引起的,并导致外爆轰减速,直到达到稳态。最后进行了参数化研究,研究了稳态和过渡阶段对环空尺寸的依赖关系。
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Detonation propagation in annular arcs of condensed phase explosives
We present a numerical study of detonation propagation in unconfined explosive charges shaped as an annular arc (rib). Steady detonation in a straight charge propagates at constant speed but when it enters an annular section, it goes through a transition phase and eventually reaches a new steady state of constant angular velocity. This study examines the speed of the detonation wave along the annular charge during the transition phase and at steady state, as well as its dependence on the dimensions of the annulus. The system is modeled using a recently proposed diffuse-interface formulation which allows for the representation of a two-phase explosive and of an additional inert material. The explosive considered is the polymer-bonded TATB-based LX-17 and is modeled using two JWL equations of state and the Ignition and Growth reaction rate law. Results show that steady state speeds are in good agreement with experiment. In the transition phase, the evolution of outer detonation speed deviates from the exponential bounded growth function suggested by previous studies. We propose a new description of the transition phase which consists of two regimes. The first is caused by local effects at the outer edge of the annulus and leads to a dependence of outer detonation speed on angular position along the arc. The second regime is induced by effects originating from the inner edge of the annular charge and leads to the deceleration of the outer detonation until steady state is reached. The study concludes with a parametric study where the dependence of the steady state and the transition phase on the dimensions of the annulus is investigated.
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