首页> 外文期刊>International journal of hydrogen energy >Study Of Cyclic Variations Of Direct-injection Combustion Fueled With Natural Gas-hydrogen Blends Using A Constant Volume Vessel
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Study Of Cyclic Variations Of Direct-injection Combustion Fueled With Natural Gas-hydrogen Blends Using A Constant Volume Vessel

机译:用恒容容器研究天然气-氢气混合燃料直接喷射燃烧的循环变化

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Cyclic variations of direct-injection combustion fueled with natural gas-hydrogen fuel blends were experimentally studied using a constant volume vessel. Direct-injection combustion was realized by injecting the high-pressure fuel into the vessel. Flame propagating photographs and pressure history in the vessel were recorded at various hydrogen volumetric fractions in the fuel blends (from 0% to 40%) under the same lean-burn conditions where the overall equivalence ratios are 0.6 and 0.8, respectively. The effect of fuel-air mixture inhomogeneous distribution and hydrogen addition on the cyclic variations was analyzed via flame development photographs and pressure-derived combustion parameters. The results indicated that the cyclic variations were initiated at the early stage of flame development. The flame kernel is closely concentric to the spark electrode and flame pattern has less irregular with hydrogen addition. Direct-injection natural gas combustion can achieve the stable lean combustion along with low cyclic variations due to the mixture stratification in the vessel. The cyclic variations decreased with the increase of hydrogen addition and this trend is more obvious at ultra-lean-burn condition. Hydrogen addition weakened the effect from turbulent flow on flame propagating process, thus reduce the cyclic variations related to the gas flow. There exists interdependency between the early combustion stage and the subsequent combustion process for direct-injection combustion.
机译:使用恒定体积的容器,对以天然气-氢燃料混合燃料为燃料的直接喷射燃烧的循环变化进行了实验研究。通过将高压燃料喷射到容器中来实现直接喷射燃烧。在总当量比分别为0.6和0.8的相同稀薄燃烧条件下,在混合燃料中各种氢气体积分数(从0%到40%)下记录了容器中的火焰传播照片和压力历史记录。通过火焰显影照片和压力衍生的燃烧参数分析了燃料-空气混合物的不均匀分布和氢的添加对循环变化的影响。结果表明,周期性变化是在火焰发展的早期开始的。火焰核与火花电极紧密同心,并且在添加氢气的情况下,火焰图案的不规则性较小。由于容器中的混合物分层,直接喷射天然气燃烧可以实现稳定的稀薄燃烧以及低循环变化。循环变化随添加氢的增加而减小,这种趋势在超稀薄燃烧条件下更为明显。加氢减弱了湍流对火焰传播过程的影响,从而减少了与气流有关的周期性变化。在直接喷射燃烧的早期燃烧阶段和随后的燃烧过程之间存在相互依赖性。

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