未加氢直喷式柴油机的试验研究

R. Adnan, H. Masjuki, T. Mahlia
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引用次数: 12

摘要

除了能源需求、国家安全和资源供应等问题外,化石燃料的消费还产生了环境方面的考虑。在全球范围内,科学家警告说,化石燃料的燃烧正在显著改变世界气候系统。局部或区域性的问题包括雾霾、酸雨和城市空气污染对健康的影响。由于严格的排放标准和石油资源的枯竭,人们一直在努力使用氢等替代燃料。如果在柴油发动机中与传统燃料配合使用,它有其自身的优点和局限性。本文研究了加氢对固定式柴油机性能和废气排放的影响。在本研究中,氢作为二次燃料在单缸406cc柴油机。氢气通过进气歧管注入,柴油直接注入燃烧室。通过一系列实验,可以看出加氢的作用,使峰值压力从5 bar提高到最大21 bar, IMEP从1.0 bar提高到1.7 bar,指示功率从4%到16%。氮氧化物和一氧化碳的排放量也分别从48-197 ppm和423-758 ppm增加。加氢使废气温度从3.1%上升到10.2%,特别是在2500转时,在所有发动机转速下,O2排放量从3.9%下降到7.6%(按体积计算)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An experimental investigation of unmodified DI diesel engine with hydrogen addition
The consumption of fossil fuels spawns environmental considerations in addition to issues of energy demand, national security and resource availability. At global level, scientists warn that the combustion of fossil fuels is significantly changing the world's climate system. Local or regional concerns include smog, acid rain, and health implications of urban air pollution. Due to stringent emission norms and depletion of petroleum resources there has been a continuous effort to use alternative fuels such as hydrogen. It has its own benefits and limitations if it is used in conjunction with conventional fuel in diesel engine. The purpose of this article was to investigate the effect of hydrogen addition on performance and exhaust gas emission of stationary diesel engine. In this study, hydrogen was used as secondary fuel in a single cylinder 406 c.c. diesel engine. The hydrogen was injected through intake manifold and diesel was injected directly inside the combustion chamber. Series of experiments were conducted and it can be seen the effect of hydrogen addition in the increase of peak pressure from 5 bar to a maximum 21 bar, IMEP from 1.0 to 1.7 bar , indicated power from 4%–16%. There were also increases in NOx and CO emissions from 48–197 ppm and 423–758 ppm, respectively. Hydrogen addition causes increase in exhaust gas temperature from 3.1% to 10.2% particularly at 2500 rpm and reduction in O2 emissions from 3.9% to 7.6% (by volume) throughout all engine speeds.
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