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首页> 外文期刊>International Journal of Automotive Technology >NUMERICAL STUDY OF A LIGHT-DUTY DIESEL ENGINE WITH A DUAL-LOOP EGR SYSTEM UNDER FREQUENT ENGINE OPERATING CONDITIONS USING THE DOE METHOD
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NUMERICAL STUDY OF A LIGHT-DUTY DIESEL ENGINE WITH A DUAL-LOOP EGR SYSTEM UNDER FREQUENT ENGINE OPERATING CONDITIONS USING THE DOE METHOD

机译:发动机运行频率在双环EGR系统下轻型柴油机的数值研究

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摘要

Exhaust gas recirculation (EGR) is an emission control technology that allows for a significant reduction in NOx emissions from light- and heavy-duty diesel engines. The primary effects of EGR are a lower flame temperature and a lower oxygen concentration of the working fluid in the combustion chamber. A high pressure loop (HPL) EGR is characterized by a fast response, especially at lower speeds, but is only applicable if the turbine upstream pressure is sufficiently higher than the boost pressure. On the contrary, for the low pressure loop (LPL) EGR, a positive differential pressure between the turbine outlet and the compressor inlet is generally available. However, a LPL EGR is characterized by a slow response, especially at low and moderate speeds. In this study, of the future types of EGR systems, the dual-loop EGR system (which has the combined features of the high-pressure loop EGR and the low-pressure loop EGR) was developed and was optimized under five selected operating conditions using a commercial engine simulation program (GT-POWER) and the DOE method. Finally, significant improvements in the engine exhaust emissions and performance were obtained by controlling several major variables.
机译:废气再循环(EGR)是一种排放控制技术,可显着减少轻型和重型柴油机的NOx排放。 EGR的主要作用是降低燃烧室中的火焰温度和降低工作液中的氧气浓度。高压回路(HPL)EGR的特点是响应速度快,尤其是在较低速度下,但仅在涡轮上游压力足够高于增压压力时才适用。相反,对于低压回路(LPL)EGR,通常在涡轮机出口和压缩机入口之间存在正压差。但是,LPL EGR的特点是响应速度慢,尤其是在低速和中等速度下。在这项研究中,在未来的EGR系统类型中,开发了双回路EGR系统(具有高压回路EGR和低压回路EGR的组合特征),并在五个选定的运行条件下对其进行了优化,商业引擎仿真程序(GT-POWER)和DOE方法。最后,通过控制几个主要变量,发动机排气排放和性能得到了显着改善。

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