首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Numerical and experimental study of combustion and emission characteristics in gasoline direct-injection compression ignition engines using intake preheating
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Numerical and experimental study of combustion and emission characteristics in gasoline direct-injection compression ignition engines using intake preheating

机译:进气预热的汽油直喷压缩点火发动机燃烧和排放特性的数值和实验研究

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This paper presents a numerical and experimental study of the combustion and emission characteristics of a gasoline direct-injection compression ignition engine using intake preheating. The gasoline direct-injection compression ignition engine was predicted to reduce emissions compared with the emissions from a conventional diesel engine. To compare the combustion and emission characteristics of the gasoline direct-injection compression ignition and diesel engines, numerical modelling was conducted using the KIVA-3V release 2 code, which is integrated with the Chemkin chemistry solver II. Numerical simulations were performed under a variety of conditions to determine the optimal conditions for gasoline direct-injection compression ignition engine operation. In order to achieve the gas pressure in the cylinder and the emission characteristics, experiments were performed using a single-cylinder engine. The simulation results agreed well with the experimental data. The gasoline autoignition was in the parcels with a lower equivalence ratio of 0.6-0.8 as opposed to the diesel autoignition parcels with a high equivalence ratio of greater than I. The ignition delay of gasoline was longer than that of diesel; therefore, the gasoline direct-injection compression ignition engine could reduce the soot emissions. The nitrogen oxide emission levels for gasoline direct-injection compression ignition were increased because of the intake preheating.
机译:本文对采用进气预热的汽油直喷压缩点火发动机的燃烧和排放特性进行了数值和实验研究。预计汽油直喷压缩点火发动机与传统柴油发动机相比将减少排放。为了比较汽油直喷压缩点火和柴油发动机的燃烧和排放特性,使用与Chemkin化学求解器II集成的KIVA-3V版本2代码进行了数值模拟。在各种条件下进行了数值模拟,以确定汽油直喷压缩点火发动机运行的最佳条件。为了获得气缸中的气压和排放特性,使用单缸发动机进行了实验。仿真结果与实验数据吻合良好。汽油自燃在当量比为0.6-0.8的小包中,而柴油自燃在当量比大于I的小包中。汽油的点火延迟长于柴油。因此,汽油直喷压缩点火发动机可以减少烟尘排放。由于进气预热,汽油直喷压缩点火的氮氧化物排放水平增加。

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