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Effect Of H2 Enrichment On The Explosive Limits Of Liquefied Petroleum Gas (LPG) In Conventional Combustionud

机译:常规燃烧中富氢对液化石油气(LPG)爆炸极限的影响 ud

摘要

The use of hydrogenated fuels shows a considerable promise for the applications in gas turbines and internal combustion engines. Hydrogen holds a significant promise as a supplemental fuel to improve the performance and emissions of ignited spark and compression ignited engines. Hydrogen has the ability to burn at extremely lean equivalence ratios. In addition, it is important to analyze the explosive limits for safety reasons and to increase the efficiency in operation of many industrial and domestic applications that use the explosion concept. The aims of this study are to determine the explosive limits of liquefied petroleum gas/air mixture and to investigate the effect on the explosive limits of liquefied petroleum gas/air mixture enriched up to 8 % vol of hydrogen at atmospheric pressure and ambient temperature. The experiments were performed in a constant volume of 20 liter closed spherical vessel. The mixtures were ignited by using a spark permanent wire that was placed at the centre of the vessel. The pressure-time variations during the explosion of liquefied petroleum gas/air mixture in explosion vessel were recorded. The explosion pressure data is used to determine the explosive limits which flame propagation is considered to occur if the explosion pressure is greater than 0.1 bar. In this study, the result shows the explosive limits range from 2 to 8 % vol of liquefied petroleum gas/air mixture and has revealed that the addition of hydrogen in liquefied petroleum gas/air mixture decreases the lower explosive limit from 2 to 1 % vol and for the upper explosive limit, the limit is also decrease from 8 to 7 % vol.
机译:氢化燃料的使用对于燃气轮机和内燃机的应用显示出很大的希望。氢气作为一种补充燃料,有望改善点火火花和压缩点火发动机的性能和排放。氢气具有以极稀薄当量比燃烧的能力。此外,出于安全原因分析爆炸极限并提高使用爆炸概念的许多工业和家庭应用的运行效率也很重要。这项研究的目的是确定液化石油气/空气混合物的爆炸极限,并研究在大气压力和环境温度下对富集了8%氢气的液化石油气/空气混合物的爆炸极限的影响。在恒定体积的20升密闭球形容器中进行实验。通过使用放置在容器中心的火花永久线点燃混合物。记录爆炸容器中液化石油气/空气混合物爆炸期间的压力时间变化。爆炸压力数据用于确定爆炸极限,如果爆炸压力大于0.1 bar,则认为爆炸发生了火焰传播。在这项研究中,结果显示液化石油气/空气混合物的爆炸极限为2%至8%vol,并表明在液化石油气/空气混合物中添加氢气使爆炸下限从2%至1%vol对于爆炸上限,该限制也从8%vol降低到7%vol。

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