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Parametric study of combustion characteristics in a direct-injection diesel homogeneous charge compression ignition engine with a low-pressure fuel injector

机译:带有低压喷油器的直喷柴油均质充量压缩点火发动机燃烧特性的参数研究

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Homogeneous charge compression ignition (HCCI) combustion is an alternative to current engine combustion systems and is used as a method to reduce emissions. It has the potential nearly to eliminate engine-out NO{sub}x emissions while producing diesel-like engine efficiencies, when a pre-mixture of gas-phase fuel and air is burned spontaneously and entirely by an autoignition process. However, when direct injection is used for diesel fuel mixture preparation in engines, the complex in-cylinder flow field and limited mixing times may result in inhomogeneity of the charge. Thus, in order to minimize non-uniformity of the charge, early injection of the fuel is desirable. However, when fuel is injected during the intake or early compression stroke, the use of high-pressure injection is limited by the relatively low in-cylinder gas pressure because of spray impingement on the cylinder walls. Thus, it is also of interest to consider low-pressure injectors as an alternative. In the present paper, the parametric behaviour of the combustion characteristics in an HCCI engine operated with a low-pressure fuel injector were investigated through numerical simulations and engine experiments. Parameters including the start-of-injection (SOI) timing and exhaust gas recirculation were considered, and diesel and n-heptane fuels were used. The results show good agreement of behaviour trends between the experiments and the numerical simulations. With its lower vaporization rates, significant effects of the SOI timing and intake gas temperature were seen for diesel fuel due to the formation of wall films. The modelling results also explained the origin of high-temperature NO{sub}x-producing regions due to the effect of the gas density on the spray.
机译:均质充气压缩点火(HCCI)燃烧是当前发动机燃烧系统的替代方法,并且被用作减少排放的方法。当气相燃料和空气的预混物通过自燃过程自发且完全燃烧时,它几乎有可能消除发动机排出的NOx排放物,同时产生类似柴油的发动机效率。但是,当直接喷射用于发动机中柴油混合物的制备时,复杂的缸内流场和有限的混合时间可能会导致进料不均匀。因此,为了最小化装料的不均匀性,期望尽早喷射燃料。然而,当在进气或早期压缩冲程期间喷射燃料时,由于喷射冲击在汽缸壁上,因此相对低的汽缸内气压限制了高压喷射的使用。因此,也考虑将低压喷射器作为替代方案。在本文中,通过数值模拟和发动机实验研究了在使用低压燃料喷射器的HCCI发动机中燃烧特性的参数行为。考虑了包括喷射开始(SOI)时间和废气再循环在内的参数,并使用了柴油和正庚烷燃料。结果表明,实验趋势与数值模拟之间的行为趋势吻合良好。由于汽化速率较低,由于壁膜的形成,柴油的SOI时间和进气温度显着影响。建模结果还解释了由于气体密度对喷雾的影响而产生高温NO {sub} x的区域的起源。

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