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The Efficiency and Emission Characteristics of Dual Fuel Combustion Using Gasoline Direct Injection and Ethanol Port Injection in an SI Engine

机译:使用汽油直喷和SI发动机乙醇端口注射双燃料燃烧的效率和排放特性

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Ethanol, one of the most widely used biofuels, has the potential to increase the knock resistance of gasoline and decrease harmful emissions when blended with gasoline. However, due to the characteristics of ethanol, a trade-off relationship between knock tolerance and BSFC exists which is balanced by the blending ratio of gasoline and ethanol. Furthermore, in a spark-ignited engine, it is reported that the blending ratio that maximizes thermal efficiency varies based on the engine operating conditions. Therefore, an injection system that can deliver gasoline and ethanol separately is needed to fully exploit the benefit of ethanol. In this study, PFI injectors and a DI injector are used to deliver ethanol and gasoline, respectively. Using the dual fuel injection system, the compression ratio was increased from 9.5 to 13.3, and the knock mitigation characteristics at the full load condition were examined. Changes in thermal efficiency and emission characteristics were also investigated at full load and part load conditions. From the experiment, it was confirmed that knock was suppressed for both compression ratios when ethanol was added, and an increase in the maximum IMEP was observed consequently. The addition of ethanol also contributed to the decrease of THC and particulate emissions while the NO_x emission level did not substantially change.
机译:乙醇是最广泛使用的生物燃料之一,有可能增加汽油的抗震性,并在与汽油混合时降低有害排放。然而,由于乙醇的特征,存在爆震耐受性与BSFC之间的折衷关系,其被汽油和乙醇的混合比平衡。此外,在火花点火发动机中,据报道,最大化热效率的混合比率基于发动机操作条件而变化。因此,需要单独提供汽油和乙醇的注射系统来充分利用乙醇的益处。在该研究中,PFI注射器和DI喷射器分别用于递送乙醇和汽油。使用双燃料喷射系统,压缩比从9.5增加到13.3,并检查全负荷条件下的爆震缓解特性。在满载和部分负载条件下还研究了热效率和排放特性的变化。从实验中,确认在加入乙醇时抑制爆震,并且因此观察到最大IMEP的增加。加入乙醇也有助于降低THC和颗粒物排放,而NO_X排放水平没有显着变化。

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