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Advantages of Fuels with High Resistance to Autoignition in Late-Injection, Low-Temperature, Compression Ignition Combustion

机译:燃料的优点具有高耐药性高耐药性,低温,压缩点火燃烧

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Oxides of nitrogen (NO{sub}x) and smoke can be simultaneously reduced in compression ignition engines by getting combustion to occur at low temperatures and by delaying the heat release till after the fuel and air have been sufficiently mixed. One of the ways to obtain such combustion in modern engines using common-rail direct injection is to inject the fuel near top dead centre with high levels of exhaust gas recirculation (EGR) -Nissan MK style combustion. In this work we study the effect of fuel autoignition quality, using four fuels ranging from diesel to gasoline, on such combustion at two inlet pressures and different EGR levels. The experiments are done in a 2-liter, single-cylinder engine with a compression ratio of 14 at an engine speed of 1200 RPM. The engine can be easily run on gasoline with a single injection near TDC, even though it cannot be run with very early injection, in the HCCI mode. Moreover for any given condition, gasoline has a significantly higher ignition delay for the same combustion phasing and hence results in very much lower NO{sub}x and smoke for a given load compared to diesel fuels. Using gasoline, an IMEP of 14.86 bar could be reached with ISFC of 178 g/kWh, smoke < 0.4 FSN, peak pressure of 133 bar, ISNO{sub}x of 1.21 g/kWh, and ISHC and ISCO < 4 g/kWh. It was not possible to get comparable performance with diesel fuels with low smoke at the same operating conditions. Further improvements in all these parameters using gasoline should be possible by optimizing injector and engine design and operating conditions and bringing in other strategies such as multiple injections.
机译:通过在低温下发生燃烧,可以在压缩点火发动机中同时降低氮气(NO {um} x)和烟雾,并且通过延迟燃料和空气足够混合,延迟热释放。使用共轨直接注射在现代发动机中获得这种燃烧的方法之一是用高水平的废气再循环(EGR) - 尼斯MK风格燃烧将燃料注入顶部死区附近。在这项工作中,我们研究了燃料自燃质量的影响,使用从柴油到汽油的四个燃料,在两个入口压力和不同的EGR水平下的这种燃烧。实验在2升的单缸发动机中进行,压缩比为14,发动机速度为1200rpm。在TDC附近,发动机可以在汽油上轻松运行汽油,即使在HCCI模式下也不能在非常早期注射时运行。此外,对于任何给定的条件,汽油对于相同的燃烧相位具有显着更高的点火延迟,因此导致与柴油燃料相比非常低的NO {Sub} x和给定负荷的烟雾。使用汽油,可以使用14.86棒的IMEF,ISFC为178g / kWh,烟雾<0.4fsn,133 bar的峰值压力为1.21g / kwh,ISHC和ISCO <4 g / kWh 。在相同的操作条件下,不可能使用具有低烟雾的柴油燃料进行比较。通过优化喷射器和发动机设计和操作条件以及诸如多次注射等其他策略,可以使用汽油的所有这些参数的进一步改进。

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