Researches on Soot Filtration Process by Comparing Simulation and Experimental Tests

B. Jurchiş
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引用次数: 0

Abstract

In this paper, the main objective of using numerical simulation was to highlight and analyse details that are very difficult to highlight through experimental tests. The development of the simulation model was also done for predictive purposes. In other words, after validation of the model, it can be used to estimate the filter load in other conditions than the experimental ones, respectively to evaluate how the particulate filter affects the operation of the internal combustion engine. In order to achieve the desired result, the creation of the model was done in two stages, the first stage was the creation of a model containing all the components of the engine, except the particle filter in order to identify the parameters of the combustion process and pollutant emissions - model validated on the basis of the indicated pressure curves, and the second stage was to complete the initial model with a particle filter and validate it from the point of view of the pressure drop, respectively of the engine performance, the aim was to obtain a trend, respectively values similar to the experimental ones.
煤烟过滤过程的仿真与实验对比研究
在本文中,使用数值模拟的主要目的是突出和分析通过实验测试很难突出的细节。仿真模型的开发也是为了预测的目的。也就是说,模型验证后,可以用来估算除实验工况外其他工况下的滤清器负荷,分别评估微粒滤清器对内燃机运行的影响。为了获得所需的结果,模型的建立是在两个阶段完成,第一阶段是创建一个包含所有引擎的组件模型,除了粒子滤波,以识别的参数——燃烧过程以及污染物的排放模型验证的基础上,指出压力曲线,第二阶段是完成初始模型与粒子滤波和验证它在压降的角度,分别对发动机性能进行了数值模拟,得到了与实验值相近的趋势值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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