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3-D simulation of soot formation in a direct-injection diesel engine based on a comprehensive chemical mechanism and method of moments

机译:基于综合化学机理和矩量法的直喷式柴油机中烟灰形成的3-D模拟

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摘要

Here, we propose both a comprehensive chemical mechanism and a reduced mechanism for a three-dimensional combustion simulation, describing the formation of polycyclic aromatic hydrocarbons (PAHs), in a direct-injection diesel engine. A soot model based on the reduced mechanism and a method of moments is also presented. The turbulent diffusion flame and PAH formation in the diesel engine were modelled using the reduced mechanism based on the detailed mechanism using a fixed wall temperature as a boundary condition. The spatial distribution of PAH concentrations and the characteristic parameters for soot formation in the engine cylinder were obtained by coupling a detailed chemical kinetic model with the three-dimensional computational fluid dynamic (CFD) model. Comparison of the simulated results with limited experimental data shows that the chemical mechanisms and soot model are realistic and correctly describe the basic physics of diesel combustion but require further development to improve their accuracy.
机译:在此,我们提出了用于三维燃烧模拟的综合化学机理和简化机理,它们描述了直喷柴油发动机中多环芳烃(PAHs)的形成。还提出了一种基于简化机制的烟尘模型和一种矩量法。柴油机中的湍流扩散火焰和多环芳烃的形成是基于减小的机理进行建模的,该简化的机理是基于以固定壁温为边界条件的详细机理。通过将详细的化学动力学模型与三维计算流体动力学(CFD)模型相耦合,可以获得PAH浓度的空间分布和发动机气缸内烟灰形成的特征参数。将模拟结果与有限的实验数据进行比较表明,化学机理和烟灰模型是真实的,可以正确描述柴油燃烧的基本物理原理,但需要进一步开发以提高其准确性。

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