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The operation of a direct injection spark ignition engine fueled with gasoline-hydrogen mixtures in dual-fuel mode

机译:直接喷射火花点火发动机的操作在双燃料模式下用汽油 - 氢气混合物燃气

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A lot of research studies have concluded that for the near future practically, it is almost impossible to replace the internal combustion engine which has become an essential part of the transportation, industrial and agriculture sectors. However, taking into consideration that the internal combustion engine is a main factor of pollution problems and sometimes the amplitude of oil crises is producing turbulences on petroleum derived fuels market, many researchers suggested that hydrogen could be one of the promising alternative energy carriers due to its many excellent combustion properties. This fuel could be used for improving combustion and emissions performance of internal combustion engines since it is carbon clean. In this paper, the operation of a direct injection spark ignition engine fueled with gasoline-hydrogen mixtures in dual-fuel mode was studied and compared with pure gasoline fueling. The base line engine used, was a turbocharged 1.6L Renault K4M SI model engine, which has been theoretically modified to be able to reach the Ford EcoBoost 1.6L engine performance, delivering 180 hp at 5800 rpm. The simulations were performed for full load condition, using different mass fractions of hydrogen mixed with gasoline as following 5%, 25%, 50%, 75%, 95% and 100% directly injected in the cylinder by a special dual gas-liquid fuel injector.
机译:很多研究研究已经得出结论,对于不久的将来实际上,几乎不可能取代内燃机,该发动机已成为运输,工业和农业部门的重要组成部分。然而,考虑到内燃机是污染问题的主要因素,有时,石油危机的幅度正在产生对石油衍生燃料市场的湍流,许多研究人员表明氢气可能是由于其有前途的替代能源载体之一许多优异的燃烧性质。该燃料可用于改善内燃机的燃烧和排放性能,因为它是碳清洁的。本文研究了用双燃料模式中燃气混合物燃料的直喷火花点火发动机的操作,并与纯汽油加油进行比较。所使用的基线发动机是一个涡轮增压1.6L雷诺K4M SI模型发动机,已经理解,能够达到福特Ecoboost 1.6L发动机性能,以5800转/分钟提供180 HP。使用特殊的双气液燃料,使用与汽油混合的不同质量分数,使用与汽油混合的不同质量级分,使用特殊的双气液燃料直接注入汽缸中的氢气的不同质量分数,25%,50%,75%,95%和100%注射器。

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