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首页> 外文期刊>International journal of hydrogen energy >Investigation of hydrogen addition to methanol-gasoline blends in an SI engine
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Investigation of hydrogen addition to methanol-gasoline blends in an SI engine

机译:研究SI发动机中甲醇与汽油混合物中氢的添加

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In this study, effects of hydrogen-addition on the performance and emission characteristics of Methanol-Gasoline blends in a spark ignition (SI) engine were investigated. Experiments were conducted with a four-cylinder and four stroke spark ignition engine. Performance tests were performed via measuring brake thermal efficiency, brake specific fuel consumption, cylinder pressure and exhaust emissions (CO, CO2, HC, NOx). These performance metrics were analyzed under three engine load conditions (no load, 50% and 100%) with a constant speed of 2000 rpm. Methanol was added to the gasoline up to 15% by volume (5%, 10% and 15%). Besides, hydrogen was added to methanol-gasoline mixtures up to 15% by volume (3%, 6%, 9% and 15%). Results of this study showed that methanol addition increases BSFC by 26% and decreases thermal efficiency by 10.5% compared to the gasoline. By adding hydrogen to the methanol - gasoline mixtures, the BSFC decreased by 4% and the thermal efficiency increased by 2% compared to the gasoline. Hydrogen addition to methanol – gasoline mixtures reduces exhaust emissions by about 16%, 75% and 15% of the mean average values of HC, CO and CO2 emissions, respectively. Lastly, ıt was concluded that hydrogen addition improves combustion process; CO and HC emissions reduce as a result of the leaning effect caused by the methanol addition; and CO2 and NOx emission increases because of the improved combustion.
机译:在这项研究中,研究了加氢对火花点火(SI)发动机中甲醇汽油混合物的性能和排放特性的影响。实验是使用四缸四冲程火花点火发动机进行的。通过测量制动器的热效率,制动器的比油耗,气缸压力和废气排放(CO,CO2,HC,NOx)进行了性能测试。这些性能指标是在三种发动机负载条件下(空载,50%和100%)以2000 rpm的恒定速度进行分析的。将甲醇添加到汽油中的体积百分比最高为15%(5%,10%和15%)。此外,将氢添加至高达15体积%(3%,6%,9%和15%)的甲醇-汽油混合物。这项研究的结果表明,与汽油相比,添加甲醇可使BSFC升高26%,热效率降低10.5%。通过将氢添加到甲醇-汽油混合物中,与汽油相比,BSFC降低了4%,热效率提高了2%。在甲醇-汽油混合物中加氢可分别减少废气排放,分别约为HC,CO和CO2排放平均值的16%,75%和15%。最后,我得出结论,添加氢气可以改善燃烧过程。由于添加甲醇引起的倾斜效应,减少了CO和HC排放;由于燃烧的改善,CO2和NOx排放增加。

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