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固体火箭冲压发动机补燃室内硼颗粒点火计算研究
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胡建新(1975-),男,博士研究生,从事火箭发动机过程仿真和火箭冲压发动机的研究。e-mail: uoyevolun@hotmail.com

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Calculation Study on Ignition of Boron Particle of Ducted Rocket Secondary Chamber
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    摘要:

    采用King硼颗粒点火模型,研究固体火箭冲压发动机补燃室内温度、压强、氧气摩尔浓度、硼颗粒初始半径对硼颗粒点火的影响。计算结果表明: 当颗粒初始条件确定后,存在一个颗粒点火所需的最低环境温度; 当氧气摩尔分数比较低时,增加环境总压,颗粒点火时间增加;当氧气摩尔分数比较高时,增加环境总压,颗粒点火时间反而减少;增大颗粒半径后,颗粒点火时间也增加;当环境温度升高时,颗粒点火时间显著减少。

    Abstract:

    The effects of various parameters on boron particle ignition of ducted rocket secondary chamber were studied with the model developed by the King. These parameters include initial oxide thickness, initial particle size, ambient temperature, pressure and oxygen mole fraction. The minimum gas temperature required for ignition is above 1900 K. The effects of total pressure and oxygen mole fraction on ignition time are found to be fairly complex. At low oxygen mole fractions, increasing total pressure leads to more difficult ignition while at high oxygen mole fraction, the reverse is true. Ignition time generally decreases with decreasing particle size. The ignition time is predicted to increase strongly with decreasing gas temperature.

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胡建新,夏智勋,罗振兵,等.固体火箭冲压发动机补燃室内硼颗粒点火计算研究[J].含能材料, 2004, 12(6):342-345.
HU Jian-xin, XIA Zhi-xun, LUO Zhen-bing, et al. Calculation Study on Ignition of Boron Particle of Ducted Rocket Secondary Chamber[J]. Chinese Journal of Energetic Materials, 2004, 12(6):342-345.

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  • 收稿日期: 2004-06-08
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  • 在线发布日期: 2011-11-03
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