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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >A numerical study on the blow-off limit of premixed hydrogen/air flames in a cylindrical micro-combustor
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A numerical study on the blow-off limit of premixed hydrogen/air flames in a cylindrical micro-combustor

机译:圆柱微型燃烧器中预混氢气/空气火焰吹灰极限的数值研究

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In the current work, a numerical study on combustion of premixed H-2-air in a micro-cylindrical combustor was carried out and the critical velocity of inlet flow that causes the blow-off was obtained. Furthermore, the effects the equivalence ratio, wall thickness, geometry of combustor and thermal properties of walls on the critical blow-off velocity were studied. The numerical results showed that, increasing the equivalence ratio results in higher critical blow-off velocity. A micro combustor with thicker wall had better flame stability. As the combustor dimeter is decreased the blow-off occur in lower inlet flow velocity. Higher thermal conductivity of walls increases the critical blow-off velocity. In addition, with varying heat convection coefficient (h) and emissivity coefficient (epsilon) of the walls from 1 to 60 W/m(2).K and 0.2 to 0.8 respectively, the critical blow-off velocity is reduced and shows the importance of wall thermal properties in the design and operation of micro-combustors.
机译:在当前的工作中,进行了对微圆柱燃烧器中预混的H-2空气的燃烧的数值研究,并获得了导致吹扫吹扫的入口流的临界速度。此外,研究了抗燃烧速度上燃烧器的等效率,壁厚,燃烧器的热性能和壁的热特性的影响。数值结果表明,增加等效率导致较高的临界吹扫速度。具有较厚壁的微型燃烧器具有更好的火焰稳定性。由于燃烧器测量值降低,在较低的入口流速下发生吹扫。壁的较高导热率增加了临界吹气速度。另外,对于从1至60W / m(2).k和0.2至0.8的壁的变化的热对流系数(H)和发射率系数(ε)分别分别为0.2至0.8,临界吹气速度降低并显示了重要性微燃烧器设计与运行中的墙体热性能。

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