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Modelling study of flue gas flow pattern with pressure, amount and shape variation catalytic converter

机译:烟气流动模式与压力,量和形状变形催化转化器的建模研究

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摘要

Purpose: The purpose of this study is to analyse the modelling of exhaust gas flow patterns with variations in pressure, number, and shape of filters on the catalytic converter. Design/methodology/approach: The research method used is a simulation using ANSYS, which starts by creating a converter catalytic model with pressure variations: (0.5-1.5 atm), number of filters: (2-5), and the form of filter-cut/filter-not-cut. Findings: The decrease in velocity is caused by non-uniform velocity in the exhaust gas flow that occurs when passing through a bend in the filter-cut that serves as a directional flow to create turbulence. Filter-cut type tends to have fluctuating pressure, turbulence flow pattern shape so that contact between filter and exhaust gas is more effective. Based on the analysis of flow patterns, the speed and pressure of the 5 filter-not-cut design at a pressure of 0.5 are the best, while at pressure (1-1.5 atm) the type 5 filter-cut is the best. Research limitations/implications: This study is limited to filter-not-cut and filter-cut types with variations in the number of filters: 2, 3, 4, and 5, and the inlet pressure between 0.5-1 atm. Practical implications: The practical implications of this study are to find a catalytic converter design that has advantages in the effectiveness of exhaust gas absorption. Originality/value: The results show that the filter-not-cut and filter-cut types have the best effectiveness in the number of 5 filters. Filter-not-cut at the pressure of 0.5 atm and filter-cut at pressure (1-1.5 atm).
机译:目的:本研究的目的是分析废气流型进行建模,在压力下,数量的变化,并在催化转化器的过滤器形状。设计/方法/方法:所使用的研究方法是利用ANSYS的模拟,其开始通过创建具有压力变化转换器催化模型:(0.5-1.5个大气压),滤波器数:(2-5),和过滤器的形式馏分/过滤器不切。发现:在速度的减少是通过在穿过所述过滤器切用作定向流动中产生紊流的弯曲时产生的废气流的非均匀的速度引起的。滤波器裁切型趋于具有波动压力,紊流图案形状,以便过滤器和废气之间的接触更有效。基于的流动模式的分析,速度和在0.5的压力的5过滤器不切割设计的压力是最佳的,而在压力(1-1.5大气压)的5型滤波器切割是最好的。研究限制/问题:本研究仅限于过滤器 - 未切割和过滤器切类型与在过滤器的数量的变化:2,3,4,和5,以及0.5-1个大气压之间的入口压力。现实意义:这项研究的现实意义是找到一个催化转换器的设计,在废气的吸收效果方面具有优势。创意/价值:研究结果表明,该过滤器不切和过滤切类型在5个滤波器的数量最好的效果。过滤器不切在0.5个大气压和过滤器切的压力的压力(1-1.5大气压)。

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