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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Quasidimensional Modeling of Direct Injection Diesel Engine Nitric Oxide, Soot, and Unburned Hydrocarbon Emissions
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Quasidimensional Modeling of Direct Injection Diesel Engine Nitric Oxide, Soot, and Unburned Hydrocarbon Emissions

机译:直喷式柴油机一氧化氮,烟灰和未燃碳氢化合物排放的拟量模型

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摘要

In this study we report the development and validation of phenomenological models for predicting direct injection (DI) diesel engine emissions, including nitric oxide (NO), soot, and unburned hydrocarbons (HC), using a full engine cycle simulation. The cycle simulation developed earlier by the authors (D. Jung and D. N. Assanis, 2001, SAE Transactions: Journal of Engines, 2001-01-1246) features a quasidimensional, multizone, spray combustion model to account for transient spray evolution, fuel-air mixing, ignition and combustion. The Zeldovich mechanism is used for predicting NO emissions. Soot formation and oxidation is calculated with a semiempirical, two-rate equation model. Unburned HC emissions models account for three major HC sources in DI diesel engines: (1) leaned-out fuel during the ignition delay, (2) fuel yielded by the sac volume and nozzle hole, and (3) overpenetrated fuel. The emissions models have been validated against experimental data obtained from representative heavy-duty DI diesel engines. It is shown that the models can predict the emissions with reasonable accuracy. Following validation, the usefulness of the cycle simulation as a practical design tool is demonstrated with a case study of the effect of the discharge coefficient of the injector nozzle on pollutant emissions.
机译:在这项研究中,我们使用完整的发动机循环模拟报告了预测直接喷射(DI)柴油发动机排放物(包括一氧化氮(NO),烟灰和未燃烧的碳氢化合物(HC))的现象模型的开发和验证。作者(D. Jung和DN Assanis,2001,SAE事务:Journal of Engines,2001-01-1246)之前开发的循环仿真具有准多维,多区域喷雾燃烧模型,可解释瞬态喷雾的演变,燃料-空气混合,点火和燃烧。 Zeldovich机制用于预测NO排放。使用半经验的二速率方程模型计算碳黑的形成和氧化。未燃烧的HC排放模型是DI柴油发动机中三种主要的HC来源:(1)点火延迟期间的稀薄燃料;(2)气囊体积和喷嘴孔产生的燃料;以及(3)渗透过多的燃料。排放模型已根据从代表性重型DI柴油机获得的实验数据进行了验证。结果表明,该模型可以合理的预测排放量。在验证之后,通过对喷油嘴的排放系数对污染物排放的影响进行案例研究,证明了循环仿真作为实用设计工具的有用性。

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