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A Phenomenological Model for Prediction Auto-Ignition and Soot Formation of Turbulent Diffusion Combustion in a High Pressure Common Rail Diesel Engine

机译:高压共轨柴油机湍流扩散燃烧自燃和烟尘形成的现象学模型

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A new phenomenological model, the TP (Temperature Phase) model, is presented to carry out optimization calculations for turbulent diffusion combustion in a high-pressure common rail diesel engine. Temperature is the most important parameter in the TP model, which includes two parts: an auto-ignition and a soot model. In the auto-ignition phase, different reaction mechanisms are built for different zones. For the soot model, different methods are used for different temperatures. The TP model is then implemented in KIVA code instead of original model to carry out optimization. The results of cylinder pressures, the corresponding heat release rates, and soot with variation of injection time, variation of rail pressure and variation of speed among TP model, KIVA standard model and experimental data are analyzed. The results indicate that the TP model can carry out optimization and CFD (computational fluid dynamics) and can be a useful tool to study turbulent diffusion combustion.
机译:提出了一种新的现象学模型,即TP(温度相)模型,以对高压共轨柴油机的湍流扩散燃烧进行优化计算。温度是TP模型中最重要的参数,它包括两个部分:自动点火和烟灰模型。在自动点火阶段,针对不同区域建立了不同的反应机制。对于烟灰模型,针对不同的温度使用不同的方法。然后以KIVA代码而不是原始模型来实现TP模型以进行优化。分析了TP模型,KIVA标准模型和实验数据之间的气缸压力,相应的放热率以及烟灰随喷射时间,轨压变化和速度变化的结果。结果表明,TP模型可以进行优化和CFD(计算流体动力学),并且可以作为研究湍流扩散燃烧的有用工具。

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