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Three-dimensional modelling of NOx and particulate traps using CFD: A porous medium approach

机译:使用CFD对NOx和微粒捕集阱进行三维建模:多孔介质方法

摘要

Lean burn after-treatment systems are the current focus for reducing emissions from diesel exhaust. The trend is for commercial CFD packages to use a single channel modelling approach. Due to computational demands, this necessitates specification of representative channels for modelling, implying prior knowledge of the flow field. This paper investigates a methodology for applying the porous medium approach to lean burn after-treatment systems. This approach has proved successful for three-way catalysis modelling and has the advantage that the flow field is predicted. Chemical kinetic rates for NOx trapping and regeneration in the model are based on information available in the open literature. Similarly, filtration information based on mass accumulation and soot combustion kinetics are also readily available. Modification of the source terms in a commercial CFD package enables prediction of trapping and release of NOx. This is an effective way to model a NOx trap after-treatment system and provides simultaneous 3D modelling of the flow field. With diesel, particulate filtration is required. In the case of particulate traps, however, because of channel geometry, some assumptions are necessary for use of the porous medium approach and these are discussed in this paper. Both models produce qualitatively correct output and have parameters that can be tuned to conform to experimental data. Data to validate the NOx trap model is to be measured. The particulate trap model, on the other hand, is a feasibility study for modelling the complete diesel after-treatment system using the porous medium approach.Keywords:
机译:稀燃后处理系统是当前减少柴油机废气排放的重点。商业CFD软件包的趋势是使用单通道建模方法。由于计算需求,这需要规范用于建模的代表性通道,这暗示了流场的先验知识。本文研究了将多孔介质方法应用于稀薄燃烧后处理系统的方法。该方法已证明对于三元催化建模是成功的,并且具有可预测流场的优势。模型中NOx捕集和再生的化学动力学速率基于公开文献中提供的信息。同样,基于质量积累和烟尘燃烧动力学的过滤信息也很容易获得。商业CFD软件包中源术语的修改可以预测NOx的捕集和释放。这是对NOx捕集阱后处理系统进行建模的有效方法,并且可以提供流场的同时3D建模。对于柴油,需要进行颗粒过滤。但是,在颗粒捕集器的情况下,由于通道的几何形状,使用多孔介质方法需要一些假设,本文将对此进行讨论。两种模型均产生定性正确的输出,并具有可调整以符合实验数据的参数。将测量用于验证NOx捕集阱模型的数据。另一方面,微粒捕集器模型是使用多孔介质方法对整个柴油后处理系统进行建模的可行性研究。

著录项

  • 作者

    Benjamin S.F.; Roberts C.A.;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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