首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Research and development of an advanced combustion system for the direct injection diesel engine
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Research and development of an advanced combustion system for the direct injection diesel engine

机译:直喷式柴油机先进燃烧系统的研究与开发

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摘要

In order to obtain a simultaneous reduction in both NO{sub}x and particulate emissions from a direct injection (DI) diesel engine, an advanced combustion system has been researched and developed in the authors' laboratory. The new combustion system comprises homogeneous charge compression ignition (HCCI) combustion at low load by early and multiple injections, combined HCCI, and lean diffusion burning at medium and higher load conditions by means of a novel combustion chamber design and multiple injections. In this paper, the research and development of the enhanced mixing by means of a raised round object (referred to in this paper as BUMP) and its application to a diesel combustion chamber design is described. Then the experimental results from a DI diesel engine equipped with a multiple injection common rail (CR) fuel injection system and the new combustion chamber design will be presented and discussed. Engine testing has shown that the BUMP combustion chamber was very effective in reducing both NO{sub}x and smoke emissions. HCCI combustion by means of multiple injections leads to extremely low NO{sub}x emissions under low load operations. At medium and higher load operation conditions, quasi HCCI combustion combined with the BUMP combustion chamber could significantly reduce NO{sub}x emissions without sacrificing particulate emission and fuel consumption.
机译:为了同时减少直喷(DI)柴油机的NO {sub} x和颗粒物排放,作者实验室已研究和开发了先进的燃烧系统。新的燃烧系统包括通过早期和多次喷射在低负荷下进行均质充气压缩点火(HCCI)燃烧,组合的HCCI,以及通过新颖的燃烧室设计和多次喷射在中等和更高负荷条件下进行稀薄燃烧。本文介绍了利用凸起的圆形物体(本文称为BUMP)增强混合的研究和开发及其在柴油燃烧室设计中的应用。然后,将介绍和讨论配备有多喷射共轨(CR)燃油喷射系统的DI柴油机的实验结果以及新的燃烧室设计。发动机测试表明,BUMP燃烧室在减少NO {x} x和烟气排放方面非常有效。在低负荷运行下,通过多次喷射进行的HCCI燃烧导致NO {sub} x排放极低。在中等和较高负荷的运行条件下,准HCCI燃烧与BUMP燃烧室相结合可以显着降低NO {x} x排放,而不会牺牲颗粒物排放和燃料消耗。

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