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首页> 外文期刊>Applied Energy >Semi-physical models to assess the influence of CI engine calibration parameters on NOx and soot emissions
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Semi-physical models to assess the influence of CI engine calibration parameters on NOx and soot emissions

机译:半物理模型,用于评估CI发动机校准参数对NOx和烟尘排放的影响

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摘要

The progressive reduction of authorized emission levels in automotive Diesel engine standards has motivated the development of numerous technologies (exhaust gas recirculation (EGR), high pressure injection systems, sophisticated boosting systems, after-treatment devices, etc.) which, in turn, drastically increases the complexity Of engine calibration. In this context the development of reliable simulation tools can help reduce the cost and time required for calibration. After a short introduction analysing the main currently existing models for evaluating engine emissions, this paper presents a novel OD semi-physical model to assess engine-out NOx and soot emissions. The combustion process is modelled via Barba's approach, while a thermodynamic two-zone calculation is used to evaluate adiabatic flame temperature. Emissions are modelled with semi-physical sub-models. This rather original approach does not evaluate emission on a crank-angle basis but only at exhaust valve opening (EVO), thus saving calculation time. The main physical parameters influencing pollutant formation are evaluated by the high-frequency OD model and used as inputs for pollutant sub-models. NOx evaluation relies on a cartography linking NOx to 02 concentration and maximum values of in-cylinder bulk temperature and adiabatic flame temperature. Soot evaluation relies on a global equation, linking soot concentration to the main factors influencing formation and oxidation processes, in particular 02 concentration, in-cylinder pressure, temperatures and durations of some specific phases of the heat release rate (HRR), as well as turbulence intensity. The calibration of the models is thus quite easy and is described in the paper. The results of the models are then compared with measurements (different from those used for model calibration). NOx predictioni are within 20% of measured values for 95% of the tested operating points, with a R-2 of 0.99, while for soot prediction a R2 coefficient of 0.93 is obtained and 96% of the tested points are within +/- 0.005 mg/cycle. Moreover, engine parameters sweeps (at constant engine speed and load) involving EGR rate, boost pressure, injection pressure and timing are performed for five operating points. The agreement with experiments is good on both qualitative and quantitative points of view, as long as a conventional combustion mode is achieved. Although simple and fast, these models are not only able to interpolate between the training points but also to extrapolate with a reasonable accuracy when the engine calibration parameters are changed. This latter property is rarely demonstrated in existing models.
机译:汽车柴油发动机标准中许可排放水平的逐步降低促使许多技术(废气再循环(EGR),高压喷射系统,复杂的增压系统,后处理装置等)的发展,这些技术反过来又大幅度地发展了增加了发动机校准的复杂性。在这种情况下,可靠的仿真工具的开发可以帮助减少校准所需的成本和时间。在简短介绍了目前评估发动机排放的主要主要模型之后,本文提出了一种新颖的OD半物理模型来评估发动机排出的NOx和烟尘排放。燃烧过程通过Barba方法建模,而热力学两区计算用于评估绝热火焰温度。排放使用半物理子模型建模。这种相当原始的方法不基于曲柄角评估排放,而仅评估排气门开度(EVO),从而节省了计算时间。通过高频OD模型评估影响污染物形成的主要物理参数,并将其用作污染物子模型的输入。 NOx评估依靠将NOx与02浓度以及缸内整体温度和绝热火焰温度的最大值联系起来的制图法。烟灰评估依赖于一个全局方程,将烟灰浓度与影响形成和氧化过程的主要因素联系在一起,尤其是O 2浓度,缸内压力,温度和某些特定相的放热速率(HRR)的持续时间,以及湍流强度。因此,模型的校准非常容易,并在本文中进行了介绍。然后将模型的结果与测量结果进行比较(与用于模型校准的结果不同)。对于95%的测试工作点,NOx预测i在测量值的20%以内,R-2为0.99,而对于烟灰预测,R2系数为0.93,96%的测试点在+/- 0.005以内毫克/周期。此外,针对五个工作点执行了涉及EGR率,增压压力,喷射压力和正时的发动机参数扫描(在恒定的发动机转速和负载下)。只要获得常规燃烧模式,在定性和定量方面与实验的一致性就很好。尽管简单快速,但是这些模型不仅能够在训练点之间进行插值,而且还可以在更改发动机校准参数时以合理的精度进行插值。后一种属性很少在现有模型中得到证明。

著录项

  • 来源
    《Applied Energy》 |2017年第15期|1505-1518|共14页
  • 作者单位

    CNRS, UMR 6598, LHEEA, Ecole Cent Nantes, 1 Rue Noe,BP 92101, F-44321 Nantes 3, France;

    CNRS, UMR 6598, LHEEA, Ecole Cent Nantes, 1 Rue Noe,BP 92101, F-44321 Nantes 3, France;

    CNRS, UMR 6598, LHEEA, Ecole Cent Nantes, 1 Rue Noe,BP 92101, F-44321 Nantes 3, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Diesel engine; OD model; NOx model; Soot model; Model calibration; Parametric study;

    机译:柴油机;OD模型;NOx模型;烟灰模型;模型标定;参数研究;

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