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Numerical Simulation of Cold-Start Emission for the Three-Way Catalytic Converter: Mathematical Model and Result Analysis

机译:三向催化转化器冷启动排放的数值模拟:数学模型和结果分析

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摘要

This paper integrated a two-dimensional axisymmetrical transient model applicable to cold-start emission applications. The model can be used to simulate and explain effects of the flow and temperature distribution on performance of a converter. The evolutions of distribution of the temperature and concentration in the monolith during the cold-start period and the effects of flow distribution in the monolith on the cold-start performance are simulated in terms of the integrated model. The investigation indicates that the axial and radial gradients of temperature of the solid become steeper as the inlet gas temperature ramp increases; this furthermore results in the movement of reaction region in the monolith, and the flow distribution in the monolith affects the radial distribution of temperature of the solid;the radial gradients of temperature of the solid become greater as the flow uniformity index decreases, whereas the light-off time doesn't always increase as the flow uniformity index decreases. The analyses on the distribution of temperature and concentration in the monolith show that the catalytic reaction zone concentrates in central area near the front face. The predicted curves of the velocity distribution have a good agreement with the experimental data.
机译:本文集成了适用于冷启动排放应用的二维轴对称瞬态模型。该模型可用于模拟和解释流量和温度分布对转换器性能的影响。根据集成模型,模拟了冷启动期间整料中温度和浓度分布的变化以及整料中流量分布对冷启动性能的影响。研究表明,随着进气温度的升高,固体的轴向和径向温度梯度会变陡。这进一步导致反应区域在整料中移动,整料中的流动分布影响固体温度的径向分布;随着流动均匀性指数的降低,固体温度的径向梯度变得更大。流量均匀性指数降低时,关闭时间并不总是增加。对整料中温度和浓度分布的分析表明,催化反应区集中在前表面附近的中心区域。速度分布的预测曲线与实验数据吻合良好。

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