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Calculation and Experiment of Soot Emission for a Directed Injection Engine

机译:指向注射发动机烟灰发射的计算与实验

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To calculate soot for a high-pressure common rail diesel engine a new soot model (TP model) is presented. In soot source term phase, when zone temperature T<1500K, gas-phase kinetics is considered and the soot precursors -PAHs (Polycyclic aromatic hydrocarbons) is calculated. When zone temperature T≥1500K, the gas-phase chemistry and soot source terms are calculated. The soot model integrated with the new auto-ignition models is then applied in multidimensional simulations. The TP model is then implemented in KIVA code instead of original model to carry out optimizing. The results of 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 tool to calculate for a high-pressure common rail directed injection diesel engine.
机译:为了计算高压共轨柴油发动机的烟灰,提出了新的烟灰模型(TP模型)。在烟灰源术语阶段,当区域温度T <1500K时,考虑气相动力学并计算烟灰前体--PAH(多环芳族碳氢化合物)。当区域温度T≥1500K时,计算气相化学和烟灰源术语。然后将与新的自动点火模型集成的烟灰模型应用于多维仿真。然后,TP模型以KIVA代码实现而不是原始模型来执行优化。分析了喷射时间变化,轨道压力变化以及TP模型中的速度变化,KIVA标准模型和实验数据的结果。结果表明,TP模型可以进行优化和CFD(计算流体动力学),并且可以是计算高压共轨定向喷射柴油发动机的工具。

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