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Catalyzed Ignition of Using Methane/Hydrogen Fuel in a Microtube for Microthruster Applications

机译:在微型推力器应用的微型管中使用甲烷/氢燃料的催化点火

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摘要

Catalyzed combustion of propellants in a microtube serves as a model of a microthruster that has potential applications for micropropulsion for small satellites/spacecraft. The effect of hydrogen addition on fuel-rich methane/oxygen ignition within a 0.40-mm-diam platinum microtube is investigated experimentally. All tests are conducted in a vacuum chamber with an ambient pressure of 0.0136 atm to simulate high-altitude conditions. Experimental results show that the critical temperature needed to catalytically lightoff fuel-rich methane/oxygen mixtures is reduced by the addition of small amounts of hydrogen to the mixture. Two-stage ignition phenomena are observed for low levels of hydrogen addition (2-7% by volume), with the first and second ignition conditions corresponding to the reactions of hydrogen and methane, respectively. The effects of changing flow rate (residence time), equivalence ratio, and amount of hydrogen addition on the critical ignition temperature are investigated. The ability of the catalyst to sustain chemical reactions once the input power is turned off is also explored and, for most cases, self-sustainability is realized. Various microtube performance parameters are estimated for all experiments, which include thrust, specific impulse, and power required to ignite reactions within the microtube.
机译:推进剂在微管中的催化燃烧可作为微型推进器的模型,该微型推进器在小型卫星/航天器的微型推进方面具有潜在的应用。实验研究了氢气添加对直径为0.40mm的铂微管中富燃料甲烷/氧气着火的影响。所有测试均在真空室中进行,环境压力为0.0136 atm,以模拟高海拔条件。实验结果表明,通过向混合物中添加少量氢气,可以降低催化富燃料的甲烷/氧气混合物所需的临界温度。对于低水平的加氢(按体积计2-7%),观察到两阶段点火现象,第一和第二点火条件分别对应于氢气和甲烷的反应。研究了改变流量(停留时间),当量比和氢气添加量对临界点火温度的影响。还探讨了一旦输入电源关闭,催化剂维持化学反应的能力,并且在大多数情况下,实现了自我可持续性。为所有实验估算各种微管性能参数,包括推力,比冲和点燃微管内反应所需的功率。

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  • 来源
    《Journal of propulsion and power》 |2009年第6期|1203-1210|共8页
  • 作者单位

    Case Western Reserve University, Cleveland, Ohio 44106;

    Case Western Reserve University, Cleveland, Ohio 44106 Department of Mechanical Engineering, University of Connecticut, Storrs, Connecticut 06269;

    Case Western Reserve University, Cleveland, Ohio 44106;

    NASA John H. Glenn Research Center at Lewis Field, Cleveland, Ohio 44135;

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  • 正文语种 eng
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  • 入库时间 2022-08-17 13:19:28

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