Simulation of continuously regenerating diesel particulate filters in transient driving cycles

Author:

Kandylas I P1,Koltsakis G C1

Affiliation:

1. Aristotle University of Thessaloniki Laboratory of Applied Thermodynamics Thessaloniki, Greece

Abstract

Forced by strict emission standards, interest in the reduction of particulate emissions becomes increasingly higher. Although the technology of diesel particulate filters (DPFs) has advanced impressively, especially during recent years, considerable technological challenges remain unsolved. The technology of NO2-assisted continuously regenerating diesel filters in conjunction with the upcoming availability of low sulphur diesel fuel represents a promising solution, especially for heavy duty engines. In the present paper, a transient modelling approach for the combined catalyst and DPF system is presented. This combined model is used to predict the regeneration performance of NO2-assisted regeneration systems in the transient conditions of a legislated European driving cycle. Although the model is based on global and approximate reaction schemes, the results illustrate the applicability of simulation tools in the process of optimizing certain important design parameters of the system, such as catalyst and particulate filter sizing and positioning, and catalyst activity requirements. It is expected that such engineering models will be valuable tools in the selection and design of such kind of systems, minimizing the testing effort and the associated costs.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

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1. A phenomenological model for particle number and size distributions of a diesel engine with a diesel oxidation catalyst;Science of The Total Environment;2019-07

2. Catalyzed diesel particulate filter modeling;Reviews in Chemical Engineering;2013-01-01

3. Diesel aftertreatment integration and matching;Diesel Engine System Design;2013

4. A lumped parameter model for diesel soot morphology evaluation and emission control;Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering;2012-02-13

5. Model-based comparative study of Euro 6 diesel aftertreatment concepts, focusing on fuel consumption;International Journal of Engine Research;2011-06

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