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Study about Effects of EGR and Injection Parameters on the Combustion and Emissions of High-pressure Common-rail Diesel Engine

机译:EGR和注射参数对高压共轨柴油发动机燃烧和排放影响的研究

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In order to understand mechanism of effects of key initial boundaries, such as the EGR rate, advance angle of fuel injection, injection pressure and pre-injection, on the combustion process and the harmful emissions, this paper made use of three-dimensional CFD simulation software FIRE to achieve numerical simulation analysis aiming at supercharged diesel engine of the vehicle. The research results showed that: key initial boundaries all have significant impact on the generation of NO_x and Soot of the common-rail diesel engine, and integrated control for the parameters of key initial boundaries can achieve specific design goals to some extent; at the same time, on the whole, compared with the change of the EGR rate, advance angle of fuel injection and rail pressure in a single injection, adopting pre-injection and the coupling EGR strategy can obtain a better compromise performance between NO_x and Soot. Thus, multiple fuel injection has obvious advantages and application prospects in the aspect of emission reduction about common-rail diesel engine.
机译:为了理解关键初级边界的影响机制,例如EGR率,燃料喷射的先进角,注射压力和预注射,在燃烧过程和有害排放中,本文采用了三维CFD仿真软件火灾实现了旨在瞄准车辆增压柴油机的数值模拟分析。研究结果表明:关键的初始边界都对共轨柴油发动机的NO_X和烟灰产生重大影响,并且关键初始边界参数的集成控制可以在一定程度上实现特定的设计目标;同时,总的来说,与EGR率的变化相比,燃料喷射和轨道压力的提前角度在一次注射中,采用预喷射和耦合EGR策略可以在NO_X和烟灰之间获得更好的折衷性能。因此,在共轨柴油发动机的减排方面具有明显的优势和应用前景。

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