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Study of the Optimization of the SCR Catalyst Position in by Exhaust System of using Mixer

机译:混合器排气系统中SCR催化剂位置的优化研究

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Background/Objectives: This research analyzes the influence of Urea SCR System's mixer and optimization of the Catalyst's position through post technologies in order to satisfy the Euro 6 regulations. Methods/Statistical Analysis: The simplified modeling was facilitated to interpret the current exhaust system. Considering the latter as the background, ANSYS was used for the Analysis. As for the method of Analysis, 5 flux variables were considered from exhaust flux of 1,000rpm~3,000 rpm in increments of 500 rpm. Findings: When the flux passes through the mixer, the speed dispersion increased and as the rpm increased, the results showed that 1,000 rpm compared to 3,000 rpm, the back pressure elevated over 500 Pa. By assessing the degree of uniformity, the uniformity expanded faster at high rpm and in low rpm, the flux itself is low so the uniformity gradually increased as it reached the latter part. Overall efficiency of over 95% was achieved at approximately 15~20 cm and in the points after that, the degree of uniformity gradually decreased in the graph. Therefore, it was determined that optimal position for the SCR catalyst should be 20~50 cm from the posterior of the mixer. Application/Improvements: This research was analyzed of the distribution uniformity effect in the exhaust system, the analysis result could be optimized of catalyst-position and improved uniformity index.
机译:背景/目的:本研究通过后置技术分析了尿素SCR系统混合器的影响和催化剂位置的优化,以符合欧6法规。方法/统计分析:简化的模型有助于解释当前的排气系统。以后者为背景,ANSYS用于分析。对于分析方法,从500rpm的1,000rpm〜3,000rpm的排气通量中考虑了5个通量变量。结果:当助焊剂通过混合器时,速度分散性增加,并且随着rpm的增加,结果表明,与3,000 rpm相比,1,000 rpm的背压升高了500 Pa。通过评估均匀度,均匀性扩展得更快在高转速和低转速下,通量本身较低,因此均匀性在到达后者时逐渐增加。在约15〜20 cm处达到95%以上的总体效率,此后,图中的均匀度逐渐降低。因此,已确定SCR催化剂的最佳位置应距混合器后部20至50 cm。应用/改进:本研究分析了排气系统中分布均匀性的影响,分析结果可优化催化剂位置并改善均匀性指标。

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