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Effect of cooling water flow direction on performance of an acetylene fuelled HCCI engine

机译:冷却水流向对乙炔燃料HCCI发动机性能的影响

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This paper deals with experimental investigations carried out on an acetylene-fuelled engine operated in homogeneous charge compression ignition (HCCI) mode to study effect of cooling water flow direction on intake charge temperature and heating requirements, and performance of the engine. In this study, in a possible load range, experiments are conducted on a single-cylinder, water-cooled, acetylene fuelled HCCI mode with conventional and reverse cooling water flow directions using different intake charge temperatures at different loads. At every load condition, best possible intake charge temperature is determined based on brake thermal efficiency. Results obtained in two cases of cooling water flow directions of HCCI mode are compared with those of conventional diesel CI mode. From the results, it is found that, reverse cooling water flow direction shows about 14 to 50% reduction in external intake charge heating at different load conditions as compared to conventional cooling water flow direction. There is an improvement in brake thermal efficiency by about 5 to 10% at different load conditions. Nitric oxide (NO) and smoke emissions are very low in both cases. However, hydrocarbon (HC) and carbon monoxide (CO) levels are higher than conventional CI mode in both the cases.
机译:本文对在均质充量压缩点火(HCCI)模式下运行的乙炔燃料发动机进行的实验研究,以研究冷却水流向对进气温度和加热需求以及发动机性能的影响。在这项研究中,在可能的负载范围内,对单缸,水冷,乙炔供油的HCCI模式进行了实验,并在不同负载下采用了不同的进气温度,采用了常规的和反向的冷却水流向。在每种负载条件下,都会根据制动器的热效率确定最佳的进气温度。将两种情况下HCCI模式的冷却水流向所获得的结果与常规柴油CI模式的结果进行了比较。从结果发现,与传统的冷却水流动方向相比,在不同的负载条件下,反向冷却水流动方向显示出外部进气增压加热减少了约14%至50%。在不同的负载条件下,制动器的热效率提高了约5%至10%。在这两种情况下,一氧化氮(NO)和烟气排放量都很低。但是,在两种情况下,碳氢化合物(HC)和一氧化碳(CO)的含量均高于常规CI模式。

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