B. S. Ermolaev, P. V. Komissarov, S. S. Basakina, V. V. Lavrov
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引用次数: 0
摘要
摘要 早些时候,通过比较数学建模结果与过量铝(Al)的硝基甲烷(NM)和高氯酸铵(AP)三元混合物非理想爆速的实验数据,确定了爆轰波反应区内各组分的放热反应速率和消耗程度。计算中使用了稳定爆轰的准一维模型,在该模型中,所有成分具有共同的压力,并以共同的质量速度运动,放热转换分三个阶段进行,包括 NM 和 AP 的分解以及 Al 的扩散燃烧。为了证实所获得的结果和相对简单的理论模型的适用性,对其中一种含有 17% NM 的三重混合物引爆时的质量速度曲线进行了计算。计算结果与测量的质量速度剖面图在剖面形状、振幅和沿爆燃反应区的质量速度下降率方面一致。考虑到计算得出的爆轰波冲击前沿的曲率,对传感器信号的上升时间进行了估算。
Mass Velocity Profiles for Nonideal Detonation of Mixtures of Nitromethane and Ammonium Perchlorate Overloaded with Aluminum: Measurements and Calculation
Earlier, by comparing the results of mathematical modeling with experimental data on the nonideal detonation velocities of triple mixtures of nitromethane (NM) and ammonium perchlorate (AP) with an excess of aluminum (Al), the rates of exothermic reactions and the consumption degree of components within the detonation wave reaction zone were determined. A quasi-one-dimensional model of steady detonation is used for the calculations in which all components have a common pressure and move with a common mass velocity, and exothermic conversion is carried out in three stages, which include the decomposition of NM and AP and the diffusion combustion of Al. To confirm the obtained results and the applicability of the relatively simple theoretical model, calculations of the mass velocity profile during detonation of one of the triple mixtures with 17% NM are carried out. The calculation results are in agreement with the measured mass velocity profile concerning the shape of the profile, the amplitude, and the rate of decrease of the mass velocity along the detonation reaction zone. The rise time of the sensor signal is estimated, taking into account the calculated curvature of the shock front of the detonation wave.
期刊介绍:
Russian Journal of Physical Chemistry B: Focus on Physics is a journal that publishes studies in the following areas: elementary physical and chemical processes; structure of chemical compounds, reactivity, effect of external field and environment on chemical transformations; molecular dynamics and molecular organization; dynamics and kinetics of photoand radiation-induced processes; mechanism of chemical reactions in gas and condensed phases and at interfaces; chain and thermal processes of ignition, combustion and detonation in gases, two-phase and condensed systems; shock waves; new physical methods of examining chemical reactions; and biological processes in chemical physics.