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A Comparative Study of the Ignition and Combustion Properties of Ethanol-Indolene Blends During HCCI Operation of a Single Cylinder Engine

机译:单缸发动机HCCI运行期间乙醇 - 吲哚烯烯混合点火和燃烧性能的对比研究

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An experimental study has been conducted to investigate the effects of indolene-ethanol blends on engine performance during homogeneous charge compression ignition (HCCI) operation of single-cylinder engine. The engine performance and HCCI stability were investigated and the high enthalpy of vaporization of ethanol resulted in significant intake charge cooling and limited the stable HCCI operation to higher intake temperatures. In the second part of the study, intake air preheat temperature was used to compensate for some of the thermal effects introduced by the fuel blends. The effects of equivalence ratio at a same end of compression temperature for different fuel blends showed that increasing the ethanol content of the fuel blend can extend the stable HCCI lean operating limit. Engine performance was characterized by in-cylinder pressure data, heat release rate, indicated mean effective pressure and exhaust gas emissions (NO_x and HC). Only the performance of E10 (10% ethanol/90% indolene by volume) blends were comparable to neat indolene. A model for estimating the HCCI ignition delay time, based on iso-octane ignition characteristics, was developed to interpret the effects of different fuel blends on the ignition timing.
机译:的实验研究已进行了研究吲哚烯 - 乙醇混合物的对发动机性能的单汽缸发动机的均质充气压缩点火(HCCI)操作过程中的影响。研究了发动机性能和HCCI稳定性,并且乙醇的蒸发焓的高焓导致显着的进气电荷冷却,并限制了稳定的HCCI操作,以更高的进气温。在研究的第二部分中,使用进气预热温度来补偿燃料混合物引入的一些热效应。对不同燃料混合物的相同压缩温度的等效比在相同的压缩温度下的影响表明,增加燃料混合物的乙醇含量可以延长稳定的HCCI瘦操作限制。发动机性能的特征在于气缸压力数据,散热速率,表示平均有效压力和废气排放(NO_X和HC)。只有E10的性能(10%乙醇/ 90%吲哚烯体积)混合物与整齐的吲哚烯相当。开发了一种基于异辛烷点火特性的估计HCCI点火延迟时间的模型,以解释不同燃料混合对点火正时的影响。

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