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A Numerical Modelling and Experimental Study on Soot Formation for a Direct Injection Diesel Engine

机译:直喷柴油发动机烟灰形成的数值建模与实验研究

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In the present study, an improved multi-dimensional numerical code has been used to simulate the combustion and emission formation processes of direct injection diesel engine. Soot formation and oxidation process have been modeled according to a hybrid particle turbulent transport controlled rate and soot oxidation rate expression. A reasonable agreement of the measured and computed data of in-cylinder pressure, heat release rate, NO and soot emissions for different engine operation conditions has been made. The effects of fuel injection pressure and timing on the diesel engine combustion and emissions formation have been further computed based on an improved multi-dimensional combustion and soot model. The effects of different testing conditions on the gaseous and particulate emissions have been discussed. Predicted trends of soot and NO formation have also been presented together with the corresponding measured data. It has demonstrated that the developed multi-dimensional engine combustion and emission formation model has provided good insight for new designs of different engine parameters and in-cylinder engine events.
机译:在本研究中,改进的多维数值代码已经用于模拟直喷式柴油发动机的燃烧和排放形成过程。烟灰形成和氧化过程已经根据杂化颗粒湍流传输控制速率和烟灰氧化率表达进行了建模。已经进行了用于不同发动机操作条件的缸内压力,热释放速率,NO和烟尘排放的测量和计算数据的合理协议。基于改进的多维燃烧和烟灰模型,进一步计算了燃料喷射压力和定时对柴油发动机燃烧和排放形成的影响。已经讨论了不同测试条件对气体和颗粒排放的影响。预测烟灰的趋势,也没有形成相应的测量数据。它表明,发达的多维发动机燃烧和排放形成模型为不同发动机参数和缸内发动机事件的新设计提供了良好的洞察力。

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