首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Mathematical modelling of catalytic exhaust systems for EURO-3 and EURO-4 emissions standards
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Mathematical modelling of catalytic exhaust systems for EURO-3 and EURO-4 emissions standards

机译:符合EURO-3和EURO-4排放标准的催化排气系统的数学模型

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The application of computer simulation in the development of catalytic exhaust aftertreatment systems for cars is over thirty years old. However, ever-increasingly stringent exhaust emissions legislation requires an ever-increasing degree of accuracy and complexity in the mathematical models applied. Traditionally, the Langmuir-Hinshelwood kinetics were applied in the majority of the models available, with a small number of representative chemical reactions. In this paper it is proved, by means of typical case studies, that the above modelling approach, with the necessary refining, can be brought to the level of accurately predicting the behaviour of advanced catalyst systems employed in EURO-3 and EURO-4 emissions homologation. An essential characteristic that was introduced to this end is the computer-aided selection (best fit) of the tunable parameters representing the apparent chemical kinetics and oxygen storage and release properties of each different catalyst washcoat combination. Other modelling improvements are also discussed in the present paper, setting the scene for high accuracy simulations in view of the current and future emissions standards for spark-ignited, diesel and gasoline direct injection (GDI)-engined vehicles. These include the modelling of the aged catalyst, as well as taking into account the effect of precious metal loading variation on the apparent kinetics.
机译:计算机模拟在汽车催化排气后处理系统开发中的应用已有三十多年的历史了。然而,日益严格的废气排放法规要求所应用的数学模型的准确性和复杂性不断提高。传统上,Langmuir-Hinshelwood动力学用于大多数可用模型中,并具有少量代表性的化学反应。在本文中,通过典型案例研究证明,上述建模方法以及必要的改进可以提高到精确预测EURO-3和EURO-4排放中使用的先进催化剂系统行为的水平。认证。为此目的引入的一个基本特征是计算机辅助选择(最佳拟合)可调参数,这些参数代表每种不同催化剂修补基面涂料组合的表观化学动力学以及氧气的储存和释放特性。本文还讨论了其他建模改进,并根据火花点火,柴油和汽油直喷(GDI)发动机车辆的当前和未来排放标准,为高精度仿真奠定了基础。这些包括老化催化剂的建模,以及考虑到贵金属负载变化对表观动力学的影响。

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