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Effect of plasma on combustion characteristics of boron

机译:等离子体对硼燃烧特性的影响

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摘要

As it is very difficult to release boron energy completely,kinetic mechanism of boron is not clear,which leads to the lack of theoretical guidance for studying how to accelerate boron combustion.A new semi-empirical boron combustion model is built on the King combustion model,which contains a chemical reaction path;two new methods of plasma-assisted boron combustion based on kinetic and thermal effects respectively are built on the ZDPLASKIN zero-dimensional plasma model.A plasma-supporting system is constructed based on the planar flame,discharge characteristics and the spectral characteristics of plasma and boron combustion are analyzed.The results show that discharge power does not change the sorts of excited-particles,but which can change the concentration of excited-particles.Under this experimental condition,plasma kinetic effect will become the strongest at the discharge power of 40 W;when the discharge power is less than 40 W,plasma mainly has kinetic effect,otherwise plasma has thermal effect.Numerical simulation result based on plasma kinetic effect is consistent with the experimental result at the discharge power of 40 W,and boron ignition delay time is shortened by 53.8% at the discharge power of 40 W,which indicates that plasma accelerates boron combustion has reaction kinetic paths,while the ability to accelerate boron combustion based on thermal effect is limited.
机译:由于完全释放硼的能量非常困难,因此硼的动力学机理还不清楚,这导致缺乏研究如何加速硼燃烧的理论指导。在金燃烧模型的基础上建立了一个新的半经验硼燃烧模型。包含化学反应路径;在ZDPLASKIN零维等离子体模型上,分别建立了基于动力学和热效应的两种等离子体辅助硼燃烧新方法。基于平面火焰,放电特性构建了等离子体支撑系统结果表明,放电功率不会改变激发粒子的种类,但会改变激发粒子的浓度。在此实验条件下,等离子体动力学效应将成为放电功率40 W时最强;当放电功率小于40 W时,等离子体主要起动力学作用,否则等离子体ha热效应。基于等离子体动力学效应的数值模拟结果与40 W放电功率下的实验结果吻合,在40 W放电功率下硼点火延迟时间缩短了53.8%,表明等离子体加速了硼的产生。燃烧具有反应动力学路径,而基于热效应加速硼燃烧的能力有限。

著录项

  • 来源
    《中国物理:英文版》 |2017年第11期|111-119|共9页
  • 作者单位

    Department of Space Command, Space Engineering University, Beijing 101416, China;

    Department of Space Command, Space Engineering University, Beijing 101416, China;

    Department of Space Command, Space Engineering University, Beijing 101416, China;

    63819 Unit of People's Liberation Army, Yibin 644000, China;

    Department of Equipment Support, Military Transportation University, Tianjin 300161, China;

    63618 Unit of People's Liberation Army, Korla 841001, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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