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Studies of Diesel Particulate Filter Performances by a Diesel Engine Simulator

机译:柴油发动机模拟器柴油颗粒过滤器性能研究

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To evaluate various Diesel Particulate Filter (DPF) efficiently, accelerated tests are one of effective methods. In this study, a simulator composed by diesel fuel burners is proposed for fundamental DPF evaluations. Firstly particle size distribution measurement, chemical composition and thermal analysis were carried out for the particulate matter (PM) generated by the simulator with several combustion conditions. The PMs generated by specific conditions showed similar characteristics to PMs of a diesel engine. Through these investigations, mechanism of PM particle growth was discussed. Secondly diversified DPFs were subjected to accelerated pressure drop and filtration efficiency tests. Features of DPFs could be clarified by the accelerated tests. In addition, the correlation between DPF pressure drop performance and PM characteristics was discussed. Thirdly regeneration performance of the simulator's PM was investigated. The PM oxidation occurred intensively at lower temperature than that of an engine. The pressure drop of the simulator's PM was higher than that of an engine. These differences between the simulator and engine might be almost explained by PM characteristics investigated in this study.
机译:为了有效地评估各种柴油微粒过滤器(DPF),加速测试是有效方法之一。在本研究中,提出了一种由柴油燃料燃烧器组成的模拟器,用于基本的DPF评估。首先进行粒度分布测量,化学成分和热分析用于由模拟器产生的颗粒物质(PM),其中模拟器具有多种燃烧条件。由特定条件产生的PM显示与柴油发动机的PM相似的特征。通过这些调查,讨论了PM颗粒生长的机制。第二多样化DPF进行加速压降和过滤效率测试。 DPF的特征可以通过加速测试阐明。此外,讨论了DPF压降性能和PM特性之间的相关性。研究了模拟器PM的第三次再生性能。 PM氧化在较低的温度下比发动机的温度较低。模拟器PM的压降高于发动机的压力下降。模拟器和发动机之间的这些差异可能几乎通过本研究中的PM特征来解释。

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