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Emission formation mechanisms in a two-stroke, direct-injection engine

机译:两冲程,直喷发动机中的排放形成机制

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Engine tests were conducted to study the effect of fuel-air mixture preparation on the combustion and emission performance of a two-stroke, direct-injection engine. The in-cylinder mixture distribution was altered by changing the injection system, injection timing, and by substituting the air in an air-assisted injector with nitrogen. Two injection systems which produce significantly different mixtures were investigated; an air-assisted injector with a highly atomized spray, and single-fl high pressure-swirl injector with a dense penetrating spray. The engine was operated at overall A/F ratios of 30:1, where stratification was necessary to ensure stable combustion; and at 20:1 and 15:1 where it was possible to operate in a nearly homogeneous mode. Moderate engine speeds and loads were investigated. The effects of the burning-zone A/F ratio were isolated by using nitrogen as the working fluid in the air-assist injector. The burning-zone A/F ratio was found to be the most significant factor in the production of NO_x due to both burning rate and phasing considerations which affected the thermal NO_x production and also by chemical production mechanisms. The burning-zone A/F ratio was also found to impact the CO formation, predominately at retarded injection timings. The HC emissions were moderately affected by the burning-zone A/F ratio, and were also observed to result from overmixing of the spray, short-circuiting of the fuel, and poor combustion quality. Some evidence of anomalous injector behavior was detected in the HC and CO results.
机译:发动机试验以研究燃料 - 空气混合物的制备在二冲程,直喷式发动机的燃烧和排放性能的影响。缸内混合分布被改变,通过改变喷射系统中,喷射定时,并通过在用氮气空气辅助喷射器代替空气。其产生显著不同的混合物进行了研究两个喷射系统;空气辅助喷射器具有高度雾化喷涂,和单FL高压漩涡注射器具有致密穿透喷雾。该发动机以30总体A / F比下操作:1,其中,分层是必要的,以确保稳定的燃烧;并在20:1和15:1,其中有可能以几乎均匀的模式中操作。适度的发动机转速和负荷进行了调查。燃烧区A / F比的影响通过在空气辅助喷射器使用氮气作为工作流体隔离。燃烧区A / F比是由于两者的燃烧速度和相位的考虑这影响了热NO_x的生产,并且还通过化学生产机制发现在生产中NO_x的最显著因素。燃烧区A /还发现F比冲击CO的形成,主要在延迟喷射定时。的HC排放量适度由燃烧区A / F比的影响,并且还观察到从过度混合喷雾的,燃料和燃烧质量差的短路造成的。在HC和CO的结果中检测到异常行为喷油一些证据。

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