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Influence of hydrogen as a fuel additive on combustion and emissions characteristics of a free piston engine

机译:氢气作为燃料添加剂对自由活塞发动机燃烧和排放特性的影响

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摘要

It has been shown that using fuel additives play an important role in enhancing the combustion characteristics in terms of efficiency and emissions. In addition, free piston engines have shown capable in reducing energy losses and presenting more efficient and reliable engines. In this context, the objective of the present work is to investigate the effect of using hydrogen as a fuel additive in natural gas homogeneous charge compression ignition free piston engine. To this aim, two models have been iteratively coupled: the combustion model that is used to calculate the heat release of the combustion and the scavenging model that is employed to determine the in-cylinder mixture state after scavenging in terms of its homogeneity and species mass fractions and to obtain the finial pressure and temperature of the in-cylinder mixture. In the former model, the 0-D approach through Cantera toolkit has been considered due to the fact that homogeneous charge compression ignition combustion is very rapid and the fuel-air mixture is well-homogenous, whereas in the latter model, 3-D-CFD approach through AN-SYS FLUENT software is considered to ensure precise calculations of the species exchange at the end of each engine cycle. The effect of hydrogen as a fuel additive has been quantified in terms of the combustion characteristics (e. g., ignition delay, heat release rate, engine overall efficiency and emissions, etc.). It has been shown that hydrogen addition reduces ignition delay time, decreases the in-cylinder peak pressure, while allowing the engine to operate with higher mechanical efficiency as it has high heat release rate, increases the NOx emission levels of the engine, but decreases the CO levels
机译:已经表明,使用燃料添加剂在提高效率和排放方面发挥着重要作用。此外,自由活塞发动机表明,能够减少能量损失并提出更有效和可靠的发动机。在这种情况下,本作工作的目的是研究使用氢作为燃料添加剂在天然气均匀电荷压缩点火火腿发动机中的燃料添加剂的效果。为此目的,两种模型已经迭代地耦合:用于计算燃烧热释放的燃烧模型和用于在其均匀性和物种质量方面进行清除后测定缸内混合物状态的清除模型馏分和获得缸内混合物的细粒压力和温度。在前模型中,通过Cantera Toolkit的0-D方法由于均匀的电荷压缩点火燃烧非常快,并且燃料 - 空气混合物是良好的均匀性,而在后一种模型中,3-D- CFD通过SYS流利软件的方法被认为是确保在每个发动机周期结束时精确计算物种交换。根据燃烧特性(例如,点火延迟,热释放速率,发动机整体效率和排放等,氢气作为燃料添加剂的效果已经量化。已经表明,氢添加减少点火延迟时间,降低缸内峰值压力,同时允许发动机以更高的机械效率操作,因为它具有高的热释放速率,增加了发动机的NOx排放水平,但减少了CO水平

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