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Modeling of HMX/GAP Pseudo-Propellant Combustion

机译:HMX / GAP伪推进剂燃烧的建模

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摘要

A comprehensive numerical analysis of HMX/GAP pseudo-propellant combustion has been established to predict the propellant burning rate and detailed combustion wave structure over a broad range of ambient pressure, laser intensity, and propellant composition. The model takes into account various fundamental processes at scales sufficient to resolve the microscopic flame-zone physiochemistry. The thermochemical parameters of HMX and GAP are deduced from existing experimental data. Four global decomposition reactions of HMX and GAP in the condensed phase as well as subsequent reactions are included. In the gas phase, a detailed chemical kinetics scheme involving 74 species and 532 reactions is employed to describe the heat-release mechanism. The effect of the external CO_2 laser on the propellant burning characteristics prevails at low pressures, but decreases at high pressures at which the conductive heat feedback from the gaseous flame to the condensed phase overrides surface absorption of radiation energy. The burning rate decreases with the addition of GAP at low pressures, even though GAP burns much faster than pure HMX. One factor contributing to this phenomenon is the rapid gasification of GAP displacing the primary flame away from the surface. Conversely, above a certain pressure level, the burning rate may be considerably enhanced by adding a small amount of GAP because of the higher surface temperature at which the exothermic decomposition of GAP plays a decisive role in providing energy to sustain propellant burning.
机译:已经建立了HMX / GAP假推进剂燃烧的综合数值分析,以预测在大范围的环境压力,激光强度和推进剂组成范围内的推进剂燃烧速率和详细的燃烧波结构。该模型考虑了足以解决微观火焰区物理化学问题的各种基本过程。 HMX和GAP的热化学参数是从现有的实验数据推导出来的。包括在冷凝相中HMX和GAP的四个全局分解反应以及后续反应。在气相中,详细的化学动力学方案涉及74种和532个反应,用于描述放热机理。外部CO_2激光对推进剂燃烧特性的影响在低压下普遍存在,而在高压下则减小,高压下从气态火焰到凝结相的传导热反馈优先于辐射能的表面吸收。即使GAP的燃烧速度比纯HMX快得多,但在低压下添加GAP时,燃烧速率也会降低。造成这种现象的一个因素是GAP的快速气化,使一次火焰远离表面。相反,在一定压力水平以上,通过添加少量的GAP可以显着提高燃烧速率,因为较高的表面温度使GAP的放热分解在提供能量以维持推进剂燃烧方面起决定性作用。

著录项

  • 来源
    《Combustion and Flame》 |2002年第3期|p.227-245|共19页
  • 作者

    E. S. KIM; V. YANG; Y.-C. LIAU;

  • 作者单位

    Department of Mechanical and Nuclear Engineering, The Pennsylvania State University, University Park, PA 16802, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 燃料与燃烧;
  • 关键词

  • 入库时间 2022-08-18 00:14:46

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