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Effect of Ambient Temperature and Humidity on Combustion and Emissions of a Spark-Assisted Compression Ignition Engine

机译:环境温度和湿度对火花辅助压燃式发动机燃烧和排放的影响

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摘要

Spark-assisted compression ignition (SACI) offers more practical combustion phasing control and a lower pressure rise rate than homogeneous charge compression ignition (HCCI) combustion and improved thermal efficiency and lower NO_x emissions than spark ignition (SI) combustion. Any practical passenger car engine, including one that uses SACI in part of its operating range, must be robust to changes in ambient conditions. This study investigates the effects of ambient temperature and humidity on stoichiometric SACI combustion and emissions. It is shown that at the medium speed and load SACI test point selected for this study, increasing ambient air temperature from 20°C to 41 °C advances combustion phasing, increases maximum pressure rise rate, causes a larger fraction of the charge to be consumed by auto-ignition (and a smaller fraction by flame propagation), and increases NO_x. Increasing ambient humidity from 32% to 60% retards combustion phasing, reduces maximum pressure rise rate, increases coefficient of variation (COV) of indicated mean effective pressure (IMEP), reduces NO_x, and increases brake-specific fuel consumption (BSFC). These results show that successful implementation of SACI combustion in real-world driving requires a control strategy that compensates for changes in ambient temperature and humidity.
机译:与均质充气压缩点火(HCCI)燃烧相比,火花辅助压缩点火(SACI)提供了更实用的燃烧定相控制,并且压力上升率更低,与火花点火(SI)燃烧相比,火花辅助压缩点火具有更高的热效率和更低的NO_x排放量。任何实用的乘用车发动机,包括在其部分工作范围内使用SACI的发动机,都必须对环境条件的变化具有鲁棒性。这项研究调查了环境温度和湿度对化学计量SACI燃烧和排放的影响。结果表明,在本研究中选择的中等速度和负载SACI测试点,将周围空气温度从20°C升高到41°C可以促进燃烧定相,增加最大压力上升率,导致消耗更多的装料通过自动点火(较小部分通过火焰传播),并增加NO_x。将环境湿度从32%增加到60%会延迟燃烧定相,降低最大压力升高速率,增加指示平均有效压力(IMEP)的变异系数(COV),降低NO_x,并增加特定制动器的燃油消耗(BSFC)。这些结果表明,在实际驾驶中成功实施SACI燃烧需要一种能补偿环境温度和湿度变化的控制策略。

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