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Characterizing high-energy-density propellants for space propulsion applications

机译:表征用于太空推进应用的高能量密度推进剂

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摘要

A technique for computationally determining the thermophysical properties of high-energy-density matter (HEDM) propellants is presented. HEDM compounds are of interest in the liquid rocket engine industry due to their high density and high energy content relative to existing industry-standard propellants. In order to accurately model rocket engine performance, cost and weight in a conceptual design environment, several thermodynamic and physical properties are required over a range of temperatures and pressures. The approach presented here combines quantum mechanical and molecular dynamic (MD) calculations and group additivity methods. A method for improving the force field model coefficients used in the MD is included. This approach is used to determine thermophysical properties for two HEDM compounds of interest: quadricyclane and 2-azido-N,N-dimethylethanamine (DMAZ). The modified force field approach provides results that more accurately match experimental data than the unmodified approach. Launch vehicle and Lunar lander case studies are presented to quantify the system level impact of employing quadricyclane and DMAZ rather than industry standard propellants. In both cases, the use of HEDM propellants provides reductions in vehicle mass compared to industry standard propellants. The results demonstrate that HEDM propellants can be an attractive technology for future launch vehicle and Lunar lander applications.
机译:提出了一种用于计算确定高能密度物质(HEDM)推进剂热物理性质的技术。 HEDM化合物因其相对于现有行业标准推进剂的高密度和高能量含量而在液体火箭发动机行业中受到关注。为了在概念设计环境中准确地模拟火箭发动机的性能,成本和重量,在一定温度和压力范围内需要几种热力学和物理特性。这里介绍的方法结合了量子力学和分子动力学(MD)计算和组可加性方法。包括用于改善在MD中使用的力场模型系数的方法。该方法用于确定两种HEDM化合物的热物理性质:四环烷和2-叠氮基-N,N-二甲基乙胺(DMAZ)。修改后的力场方法提供的结果比未修改的方法更准确地匹配实验数据。介绍了运载火箭和月球着陆器的案例研究,以量化采用四环烷和DMAZ而非行业标准推进剂对系统水平的影响。在这两种情况下,与工业标准推进剂相比,使用HEDM推进剂可减少车辆质量。结果表明,HEDM推进剂对于未来的运载火箭和月球着陆器应用可能是一种有吸引力的技术。

著录项

  • 来源
    《Acta astronautica》 |2009年第8期|967-986|共20页
  • 作者单位

    School of Aerospace Engineering, Georgia Institute of Technology, 270 Ferst Drive, Atlanta, GA 30332, USA;

    SpaceWorks Engineering, Inc., 1200 Ashwood Parkway, Suite 506, Atlanta, GA 30338, USA;

    School of Aerospace Engineering, Georgia Institute of Technology, 270 Ferst Drive, Atlanta, GA 30332, USA;

    School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, GA 30332, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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