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An investigation of ethylene laminar diffusion flames at sub-atmospheric pressures to simulate microgravity.

机译:在低于大气压的压力下研究乙烯层流扩散火焰以模拟微重力。

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摘要

Ethylene/Air diffusion flames were studied at sub and super-atmospheric pressures to simulate a microgravity environment at fuel flow rates of 0.482 mg/s and 1.16 mg/s. Flame properties including flame dimensions, soot formation, temperature, and attachment mechanisms were investigated. Overall, luminous flame height decreased with decreasing pressure to the point of visible luminosity disappearance, resulting in blue flames. Flame width increased with decreasing pressure until the flame was almost spherical. Soot formation decreased with decreasing pressure to negligible concentrations in a near vacuum. At 0.482 mg/s, the percentage of carbon converted into soot was between 0.01% and 0.12%, whereas at 1.16 mg/s, this percentage was between 0.5% and 11% at sub-atmospheric pressures. Maximum flame temperatures increased with decreasing pressure. Regardless of fuel flow rate, the diffusion flames remained attached to the exterior of the burner. This attachment point moved further down the burner exterior as pressure decreased until a near vacuum.
机译:在亚大气压和超大气压下研究了乙烯/空气扩散火焰,以模拟燃料流量为0.482 mg / s和1.16 mg / s的微重力环境。研究了火焰特性,包括火焰尺寸,烟灰形成,温度和附着机理。总体而言,随着压力的降低,发光火焰的高度降低到可见的发光度消失的程度,从而产生蓝色火焰。火焰宽度随着压力的降低而增加,直到火焰几乎呈球形。在接近真空的情况下,随着压力降低至可忽略的浓度,烟灰形成减少。在0.482 mg / s时,碳转化为烟灰的百分比在0.01%和0.12%之间,而在1.16 mg / s时,该百分比在低于大气压的情况下在0.5%和11%之间。最高火焰温度随压力降低而增加。无论燃料流量如何,扩散火焰都始终附着在燃烧器的外部。随着压力的降低,该附接点进一步向下移动至燃烧器外部,直至接近真空。

著录项

  • 作者

    Panek, Natalie.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Aerospace.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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