Mathematical simulation of transient combustion of melted energetic materials

IF 0.3 Q4 CHEMISTRY, MULTIDISCIPLINARY Chemical Bulletin of Kazakh National University Pub Date : 2019-09-30 DOI:10.15328/cb1079
V. Zarko
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Abstract

The computer code is elaborated for numerical simulation of transient combustion of energetic materials (EM) subjected to the action of time-dependent heat flux and under transient pressure conditions. It allows studying combustion response upon interrupted irradiation (transient pressure) and under action of periodically varied heat flux (pressure) in order to determine stability of ignition transients and parameters of transient combustion. The originally solid EM melts and then evaporates at the surface. It is assumed that chemical transformations occur both in the condensed and gas phases. At the burning surface, the phase transition condition in the form of Clapeyron-Clausius law for equilibrium evaporation is formulated that corresponds to the case of combustion of sublimated or melted EM. The paper contains description of transient combustion problem formulation and several examples of transient combustion modeling. At present time a precise prediction of transient burning rate characteristics is impossible because of the lack of information about magnitude of EM parameters at high temperatures. However, the simulation results bring valuable qualitative information about burning rate behavior at variations in time of external conditions – radiant flux and pressure.
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熔融含能材料瞬态燃烧的数学模拟
阐述了含能材料在随时间热流的作用下,在瞬态压力条件下瞬态燃烧数值模拟的计算机程序。它可以研究在中断照射(瞬态压力)和周期性变化的热流密度(压力)作用下的燃烧响应,以确定点火瞬态的稳定性和瞬态燃烧的参数。原来固体的电磁熔化,然后在表面蒸发。假定化学转变在冷凝相和气相中都发生。在燃烧表面,以Clapeyron-Clausius定律的形式给出了对应于升华或熔化EM燃烧情况的平衡蒸发相变条件。本文描述了瞬态燃烧问题的表述和瞬态燃烧建模的几个例子。目前,由于缺乏关于高温下电磁参数大小的信息,对瞬态燃烧速率特性的精确预测是不可能的。然而,模拟结果提供了有价值的定性信息,关于燃烧速率在外部条件-辐射通量和压力随时间变化的行为。
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审稿时长
10 weeks
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