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EFFECTS OF HYDROGEN ENRICHMENT ON THE REATTACHMENT AND HYSTERESIS OF LIFTED METHANE FLAMES

机译:氢气富集对升降甲烷火焰重新附点和滞后的影响

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The purpose of this study is to observe the effects of hydrogen enrichment on the stability of lifted, partially premixed, methane flames. Due to the relatively large burning velocity of hydrogen-air flames when compared to that of typical hydrocarbon-air flames, hydrogen enriched hydrocarbon flames are able to create stable lifted flames at higher velocities. In order to assess the impact of hydrogen enrichment, a selection of studies in lifted and attached flames were initiated. Experiments were performed that focused on the amount of hydrogen needed to reattach a stable, lifted methane jet flame above the nozzle. Although high fuel velocities strain the flame and cause it to stabilize away from the nozzle, the high burning velocity of hydrogen is clearly a dominant factor, where as the lifted position of the flame increased, the amount of hydrogen needed to reattach the flame increased at the same rate. In addition, it was observed that as the amount of hydrogen in the central jet increased, the change in flame liftoff height increased and hysteresis became more pronounced. It was found that the hysteresis regime, where the flame could either be stabilized at the nozzle or in air, shifted considerably due to the presence of a small amount of hydrogen in the fuel stream. The effects of the hydrogen enrichment, however small the amount of hydrogen compared to the overall jet velocity, was the major factor in the flame stabilization, even showing discernible effects on the flame structure.
机译:本研究的目的是观察氢气富集对升高,部分预混合的甲烷火焰的稳定性的影响。由于与典型的烃风火相比,氢气火焰的燃烧速度相对较大,富氢的烃火焰能够在更高的速度下产生稳定的提升火焰。为了评估氢富集的影响,启动了在提升和附着的火焰中选择的研究。进行实验,其集中在喷嘴上方稳定的稳定的氢气所需的氢气量。尽管高燃料速度应变火焰并导致其稳定远离喷嘴,但氢气的高燃烧速度显然是一个显性因素,在火焰的提升位置增加时,氢气所需的氢气量增加了火焰。相同的速度。此外,观察到,随着中央射流中的氢量增加,火焰升空高度的变化增加,滞后变得更加明显。发现滞后区域,其中火焰可以在喷嘴或空气中稳定,由于燃料流中存在少量氢气,显着变化。与总喷射速度相比,氢气富集的效果是氢气的浓度,是火焰稳定化的主要因素,甚至显示对火焰结构的可辨别效果。

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