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Simulation of Triangular-Cell-Shaped, Fibrous Wall-Flow Filters
Technical Paper
2003-01-0844
ISSN: 0148-7191, e-ISSN: 2688-3627
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English
Abstract
In the present work we apply a computational simulation framework developed for square-cell shaped honeycomb Diesel Particulate Filters to study the filtration, pressure drop and soot oxidation characteristics of recently developed triangular-cell-shaped, high porosity wall-flow filters. Emphasis is placed on the evaluation of the applicability and adaptation of the previously developed models to the case of triangular channels. To this end Computational Fluid Dynamics, asymptotic analysis, multichannel and “unit-cell” calculations are employed to analyze filter behavior and the results are shown to compare very well to experiments available in the literature.
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Authors
- Athanasios G. Konstandopoulos - Aerosol & Particle Technology Laboratory, CERTH/CPERI, Thermi Thessaloniki, Greece
- Nickolas Vlachos - Aerosol & Particle Technology Laboratory, CERTH/CPERI, Thermi Thessaloniki, Greece
- Paraskevi Housiada - Aerosol & Particle Technology Laboratory, CERTH/CPERI, Thermi Thessaloniki, Greece
- Margaritis Kostoglou - Aerosol & Particle Technology Laboratory, CERTH/CPERI, Thermi Thessaloniki, Greece
Topic
Citation
Konstandopoulos, A., Vlachos, N., Housiada, P., and Kostoglou, M., "Simulation of Triangular-Cell-Shaped, Fibrous Wall-Flow Filters," SAE Technical Paper 2003-01-0844, 2003, https://doi.org/10.4271/2003-01-0844.Also In
Diesel Emission Measurement, Modeling, & Control from the SAE 2003 World Congress on CD-ROM
Number: SP-1754CD; Published: 2003-03-03
Number: SP-1754CD; Published: 2003-03-03
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