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Residence time investigation in a co-axial dielectric barrier discharge reactor

机译:同轴介质阻挡放电反应器中的停留时间研究

摘要

The residence time distribution (RTD) is a crucial parameter when treating engine exhaust emissions with a Dielectric Barrier Discharge (DBD) reactor. In this paper, the residence time of such a reactor is investigated using a finite element based software: COMSOL Multiphysics 4.3.udNon-thermal plasma (NTP) discharge is being introduced as a promising method for pollutant emission reduction. DBD is one of the most advantageous of NTP technologies. In a two cylinder co-axial DBD reactor, tubes are placed between two electrodes and flow passes through the annuals between these barrier tubes.udIf the mean residence time increases in a DBD reactor, there will be a corresponding increase in reaction time and consequently, the pollutant removal efficiency can increase. However, pollutant formation can occur during increased mean residence time and so the proportion of fluid that may remain for periods significantly longer than the mean residence time is of great importance.udIn this study, first, the residence time distribution is calculated based on the standard reactor used by the authors for ultrafine particle (10-500 nm) removal. Then, different geometrics and various inlet velocities are considered. Finally, for selected cases, some roughness elements added inside the reactor and the residence time is calculated. These results will form the basis for a COMSOL plasma and CFD module investigation.
机译:当用介质阻挡放电(DBD)反应堆处理发动机废气排放时,停留时间分布(RTD)是关键参数。在本文中,使用基于有限元的软件COMSOL Multiphysics 4.3对这种反应器的停留时间进行了研究。udn非热等离子体(NTP)放电是一种有希望的减少污染物排放的方法。 DBD是NTP技术中最有优势的技术之一。在两缸同轴DBD反应器中,将管放置在两个电极之间,并且流经这些阻挡管之间的环形通道。 ud如果DBD反应器中的平均停留时间增加,则反应时间也会相应增加,因此,污染物去除效率可以提高。但是,污染物的形成可能会在平均停留时间增加的情况下发生,因此可能保留比平均停留时间更长的时间的流体比例非常重要。 ud在本研究中,首先,根据作者使用的标准反应器,用于去除超细颗粒(10-500 nm)。然后,考虑不同的几何形状和各种入口速度。最后,对于选定的情况,计算了一些在反应器内部添加的粗糙度元素和停留时间。这些结果将构成COMSOL等离子和CFD模块研究的基础。

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