首页> 外文会议>2003 Fall Technical Conference of the ASME Internal Combustion Engine Division; Sep 7-11, 2003; Erie, Pennsylvania >A MODELLING APPROACH TO THE DESIGN OPTIMIZATION OF CATALYTIC CONVERTERS OF I. C. ENGINES
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A MODELLING APPROACH TO THE DESIGN OPTIMIZATION OF CATALYTIC CONVERTERS OF I. C. ENGINES

机译:I.C.发动机催化转化器设计优化的建模方法

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In this paper, a modelling approach to the design optimization of catalytic converters is presented. The first step of the optimization is the model-assisted sizing of catalysts. For a given inlet exhaust condition, a semi-empirical, experimentally calibrated, 0-D steady state catalyst model is employed to sort through a data base of catalysts under given restraints, yielding few successful candidates. Following this screening process, a 1-D transient plug-flow catalyst model is used to analyze the species concentrations and the temperature variation across the catalyst. The second step deals with the flow optimization of the catalyst converter under the given geometric restraints. A commercially available CFD package is employed to simulate isothermal flow and to evaluate flow uniformity characteristics in the catalytic converter. The substrate is modelled as porous media, where viscous and initial resistances are specified via empirical formula. With the help of the CFD tool, the flow in the converter can be optimized using appropriate boundary layer control methods. In a specific example, the effects of perforated plate on the flow separation in a wide-angle diffuser are demonstrated. This paper also addresses the issue of flow resistance of perforated plates.
机译:本文提出了一种催化转化器设计优化的建模方法。优化的第一步是催化剂的模型辅助上浆。对于给定的进气口排气条件,采用半经验的,经过实验校准的0-D稳态催化剂模型在给定的约束条件下对催化剂的数据库进行分类,产生的成功候选物很少。在此筛选过程之后,使用一维瞬态活塞流催化剂模型来分析物种浓度和整个催化剂的温度变化。第二步处理在给定的几何约束下催化剂转化器的流量优化。使用可商购的CFD套件来模拟等温流动并评估催化转化器中的流动均匀性。将基材建模为多孔介质,其中通过经验公式指定粘性和初始电阻。借助CFD工具,可以使用适当的边界层控制方法优化转换器中的流量。在一个具体示例中,将说明多孔板对广角扩散器中流动分离的影响。本文还讨论了多孔板的流动阻力问题。

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