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Investigation of multistage injection strategies in a DISI engine fueled with methane under stratified charge lean combustion conditions

机译:分层电荷稀薄燃烧条件下甲烷燃料燃料多级注射策略研究

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摘要

A three-dimensional numerical study has been performed to study combustion and emission of methane in a stratified charge direct injection spark ignition engines under the multistage injection strategies. Firstly, the combustion and emission characteristics of a single-injection strategy were investigated, and then the effects of two-stage and three-stage injection strategies of the injected fuel on combustion and emissions were analyzed. This simulation was run from intake valve opening to exhaust valve opening under stratified charge conditions using the ANSYS Forte numerical software. The Discrete Particle Ignition Kernel Flame model was used to investigate the ignition process and also the combustion and flame propagation were simulated with the G-equation model. The numerical results show that the multistage injection strategies achieve a significant improvement in the cylinder pressure and combustion efficiency, while reducing NOx, CO, and unburned hydrocarbon emissions compared to single-injection strategy under stratified charge conditions. Also, the efficient multistage injection strategies enhanced the benefits of the emission reduction in the stratified lean combustion with additional increases of combustion efficient.
机译:已经进行了三维数值研究,以在多级注射策略下研究分层电荷直接喷射火花点火发动机中的甲烷燃烧和排放。首先,研究了单喷射策略的燃烧和排放特性,分析了对注射燃料对燃烧和排放的两阶段和三阶段注射策略的影响。该模拟从进气门开口运行到使用ANSYS Forte数值软件的分层充电条件下的排气阀开口。离散粒子点火核火焰模型用于研究点火过程,并且通过G方程模型模拟燃烧和火焰传播。数值结果表明,多级注射策略实现了气缸压力和燃烧效率的显着改善,同时减少了与分层电荷条件下的单注射策略相比的NOx,CO和未燃烧的烃排放。此外,有效的多级注射策略增强了分层贫燃烧的排放减少的益处,额外的燃烧效率增加。

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