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Three-Dimensional Computation of the Effects of the Swirl Ratio in Direct-Injection Diesel Engines on NOx and Soot Emissions

机译:直喷式柴油机涡流比对NOx和烟尘排放影响的三维计算

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Three-dimensional computation has been applied to analyze combustion and emission characteristics in direct-injection diesel engines. A computational code called TurboKIVA was used to investigate the effects of the swirl ratio, one of the fundamental factors related to combustion control, on combustion characteristics and NOx and soot emissions. The code was first modified to calculate soot formation and oxidation and the precise behavior of fuel drops on the combustion chamber wall. As a result of improving calculation accuracy, good agreement was obtained between the measured and predicted pressure, heat release rate and NOx and soot emissions. Using this modified version of TurboKIVA, the effects of the swirl ratio on NOx and soot emissions were investigated. The computational results showed that soot emissions were reduced with a higher swirl ratio. However, a further increase in the swirl ratio produced greater soot emissions. A careful examination of the fuel spray formation and air-fuel mixing process revealed the reasons for the increased soot emissions. Based on these results, this paper describes the effects of the swirl ratio on combustion characteristics and NOx and soot emissions and the mechanism of soot formation and oxidation in DI diesel engines.
机译:已经应用三维计算来分析直喷柴油发动机中的燃烧和排放特性。使用称涡轮系的计算代码用于探讨旋流比的效果,燃烧控制与燃烧控制有关的基本因素之一,燃烧特性和NOx和烟灰排放。首先修改该代码以计算燃点形成和氧化以及燃料腔壁上的燃料的精确行为。由于计算精度提高,在测量和预测的压力,热释放率和NOx和烟灰排放之间获得了良好的一致性。使用这种修改版的Turbokiva,研究了旋流比对NOx和烟灰排放的影响。计算结果表明,旋转比率较高,烟灰排放减少。然而,旋流比的进一步增加产生了更大的烟灰排放。仔细检查燃料喷雾形成和空气燃料混合过程揭示了烟灰排放增加的原因。基于这些结果,本文介绍了旋涡比对燃烧特性和NOx和烟灰排放的影响以及DI柴油发动机中的烟灰形成和氧化机理。

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