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State relations for a two-phase mixture of reacting explosives and applications

机译:反应性炸药的两相混合物的状态关系及其应用

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To assess the assumptions behind the two phase mixture rule for reacting explosives, the shock-to-detonation transition process was calculated for high explosives using a finite difference method. An ignition and growth model and the Jones-Wilkins-Lee (JWL) equations of state were employed. The simple mixture rule assumes that the reacting explosive is a simple mixture of the reactant and product components. Four different assumptions, such as that of thermal equilibrium and isotropy, were adopted to calculate the pressure. The main purpose of this paper is to present the answer to the question of why the numerical results of shock-initiation are insensitive to the assumptions adopted. The equations of state for reactants and products were assessed by considering plots of the specific internal energy E and specific volume V. If the slopes of the constant-pressure lines for both components in the E-V plane are almost the same, it is demonstrated that the numerical results are insensitive to the assumptions adopted. We have found that the relation for the specific volumes of the two components can be approximately expressed by a single curve of the specific volume of the reactant vs that of the products. We discuss this relationship in terms of the results of the numerical simulation.
机译:为了评估爆炸物反应的两相混合规则背后的假设,使用有限差分法计算了高爆炸物的冲击-爆炸转变过程。使用点火和生长模型以及Jones-Wilkins-Lee(JWL)状态方程。简单混合规则假定反应炸药是反应物和产物组分的简单混合物。采用四种不同的假设(例如热平衡和各向同性的假设)来计算压力。本文的主要目的是为以下问题提供答案:为什么激波产生的数值结果对所采用的假设不敏感。通过考虑比内部能量E和比体积V的图来评估反应物和产物的状态方程。如果EV平面中两个组件的恒压线的斜率几乎相同,则表明数值结果对所采用的假设不敏感。我们已经发现,两个组分的比体积的关系可以通过反应物比体积与产物的比体积的一条曲线近似表示。我们根据数值模拟的结果来讨论这种关系。

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