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Application of a Phenomenological Soot Model for Diesel Engine Combustion

机译:柴油发动机燃烧现象学烟灰模型的应用

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摘要

The application of the improved CFD code for the simulation of combustion and emission formation in a high-speed diesel engine has been presented and discussed. The soot concentration transport equation is found and solved together with all other flow equations. A slip correction factor is introduced into this equation. In turbulent combustion, the soot particles are contained within the turbulent eddies,and burnt up swiftly with the dissipation of these eddies in the soot oxidation zone. However, the chemical reactions always process except the dissipation of turbulent eddies and the intermixing of soot particles and turbulent eddies. The soot oxidation rate should be controlled simultaneity by the chemical reactions rate and the dissipation rate of turbulent eddies. A hybrid particle turbulent transport controlled rate and soot oxidation rate model is present in this paper and Soot formation and oxidation processes have been modeled according to this model. A reasonable agreement of the measured and computed data of in-cylinder pressure, soot, and NO emissions for different engine operation conditions has been made. The precision of simulated soot concentration is improved compare with the commonly Hiroyasu-Nagel-Strickland(HNS)soot model.
机译:提出并讨论了改进的CFD代码用于模拟燃烧和发射形成的燃烧和发射形成的应用。发现烟灰浓度传输方程并与所有其他流动方程一起解决。将滑移校正因子引入该等式。在湍流燃烧,烟尘颗粒包含在湍流漩涡中,并与在烟灰氧化区,这些漩涡的散热烧毁迅速。然而,除了湍流漩涡的耗散和烟灰颗粒和湍流漩涡的混合之外,化学反应总是处理。应通过化学反应速率和湍流漩涡的耗散速度来控制烟灰氧化速率。在本文中存在杂化颗粒湍流运输控制速率和烟灰氧化速率模型,并且根据该模型建模了烟灰地层和氧化过程。已经进行了用于不同发动机操作条件的圆柱压力,烟灰,烟灰,烟灰,没有排放的测量和计算数据的合理协议。模拟烟灰浓度的精度与常见的Hiroyasu-Nagel-strickland(HNS)烟灰模型进行了改进。

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