Lumped Approach for Flow-Through and Wall-Flow Monolithic Reactors Modelling for Real-Time Automotive Applications
暂无分享,去创建一个
Francisco José Arnau | Pedro Piqueras | Francisco Payri | María José Ruiz | F. Payri | F. Arnau | P. Piqueras | María José Ruiz
[1] Francisco José Arnau,et al. External heat losses in small turbochargers: Model and experiments , 2014 .
[2] David E. Foster,et al. Impact of filtration velocities and particulate matter characteristics on diesel particulate filter wall loading , 2009 .
[3] F. Arnau,et al. Development of an Integrated Virtual Engine Model to Simulate New Standard Testing Cycles , 2018 .
[4] Vikram Iyengar,et al. Real Time Implementation of DOC-DPF Models on a Production-Intent ECU for Controls and Diagnostics of a PM Emission Control System , 2009 .
[5] Petr Kočí,et al. Modelling of micro/nano-scale concentration and temperature gradients in porous supported catalysts , 2007 .
[6] H. S. Fogler,et al. Elements of Chemical Reaction Engineering , 1986 .
[7] Edward J. Bissett,et al. Mathematical model of the thermal regeneration of a wall-flow monolith diesel particulate filter , 1984 .
[8] Kenneth B. Bischoff. Fundamentals of Chemical Reaction Engineering (Brotz, Walter) , 1966 .
[9] Pedro Piqueras,et al. On the impact of DPF downsizing and cellular geometry on filtration efficiency in pre- and post-turbine placement , 2017 .
[10] Antonio J. Torregrosa,et al. A Tool for Predicting the Thermal Performance of a Diesel Engine , 2011 .
[11] José Galindo,et al. Compressor Efficiency Extrapolation for 0D-1D Engine Simulations , 2016 .
[12] Petr Kočí,et al. Sequence of monolithic converters DOC–CDPF–NSRC for lean exhaust gas detoxification: A simulation study , 2010 .
[13] Bernardo Tormos,et al. Hydrocarbon emissions speciation in diesel and biodiesel exhausts , 2009 .
[14] Mansour Masoudi. Hydrodynamics of Diesel Particulate Filters , 2002 .
[15] Dada A.O,et al. Langmuir, Freundlich, Temkin and Dubinin–Radushkevich Isotherms Studies of Equilibrium Sorption of Zn 2+ Unto Phosphoric Acid Modified Rice Husk , 2012 .
[16] Magín Lapuerta,et al. A method to determine the fractal dimension of diesel soot agglomerates. , 2006, Journal of colloid and interface science.
[17] Jin Won Kim,et al. Temperature-Programmed Adsorption and Characteristics of Honeycomb Hydrocarbon Adsorbers , 2002 .
[18] Pedro Piqueras,et al. Experimental assessment of pre-turbo aftertreatment configurations in a single stage turbocharged diesel engine. Part 1: Steady-state operation , 2015 .
[19] Johann C. Wurzenberger,et al. Modeling of Catalyzed Particulate Filters - Concept Phase Simulation and Real-Time Plant Modeling on HiL , 2016 .
[20] Christopher Depcik,et al. Development of a Simplified Diesel Particulate Filter Model Intended for an Engine Control Unit , 2014 .
[21] Pedro Piqueras,et al. Model-based passive and active diagnostics strategies for diesel oxidation catalysts , 2017 .
[22] Reinhard Niessner,et al. Comprehensive kinetic characterization of the oxidation and gasification of model and real diesel soot by nitrogen oxides and oxygen under engine exhaust conditions: Measurement, Langmuir–Hinshelwood, and Arrhenius parameters , 2006 .
[23] José Galindo,et al. High-frequency response of a calculation methodology for gas dynamics based on Independent Time Discretisation , 2009, Math. Comput. Model..
[24] Johann C. Wurzenberger,et al. 1D Modelling of Reactive Fluid Dynamics, Cold Start Behavior of Exhaust Systems , 2006 .
[25] Alberto Broatch,et al. Development and Validation of a Submodel for Thermal Exchanges in the Hydraulic Circuits of a Global Engine Model , 2018 .
[26] Francisco José Arnau,et al. A fluid dynamic model for unsteady compressible flow in wall-flow diesel particulate filters , 2011 .
[27] Ümit Özgür Köylü,et al. Effect of operating conditions on the size, morphology, and concentration of submicrometer particulates emitted from a diesel engine , 2006 .
[28] M. Kostoglou,et al. Fundamental Studies of Diesel Particulate Filters: Transient Loading, Regeneration and Aging , 2000 .
[29] M. Maricq,et al. The effective density and fractal dimension of soot particles from premixed flames and motor vehicle exhaust , 2004 .
[30] Huzeifa Ismail Badshah,et al. Particle Emissions from Light-Duty Vehicles during Cold-Cold Start , 2016 .
[31] Margaritis Kostoglou,et al. Frictional and heat transfer characteristics of flow in square porous tubes of wall-flow monoliths , 2012 .
[32] Itodo A.U,et al. Sorption Energies Estimation Using Dubinin-Radushkevich and Temkin Adsorption Isotherms , 2010 .
[33] Greg Rideout,et al. Characterization of Real-Time Particle Emissions from a Gasoline Direct Injection Vehicle Equipped with a Catalyzed Gasoline Particulate Filter During Filter Regeneration , 2016, Emission Control Science and Technology.
[34] Petr Kočí,et al. Catalytic Converters for Automobile Diesel Engines with Adsorption of Hydrocarbons on Zeolites , 2005 .
[35] James C. Cavendish,et al. Transients of monolithic catalytic converters. Response to step changes in feedstream temperature as related to controlling automobile emissions , 1982 .
[36] Grigorios C. Koltsakis,et al. NO2-Assisted Regeneration of Diesel Particulate Filters: A Modeling Study , 2002 .
[37] Robert Henry Hammerle,et al. Organic emissions profile for a light-duty diesel vehicle , 1999 .
[38] Magín Lapuerta,et al. Modeling of the Soot Accumulation in DPF Under Typical Vehicle Operating Conditions , 2010 .
[39] Pablo Olmeda,et al. A New Tool to Perform Global Energy Balances in DI Diesel Engines , 2014 .
[40] Christopher Depcik,et al. Combining the Classical and Lumped Diesel Particulate Filter Models , 2015 .
[41] Athanasios G. Konstandopoulos,et al. Flow Resistance Descriptors for Diesel Particulate Filters: Definitions, Measurements and Testing , 2003 .
[42] H. V. Kehiaian,et al. Enthalpies of vaporization of organic compounds : a critical review and data compilation , 1985 .
[43] Johannes H. Bitter,et al. Generation, Characterization, and Impact of Mesopores in Zeolite Catalysts , 2003 .
[44] Athanasios G. Konstandopoulos,et al. Inertial Contributions to the Pressure Drop of Diesel Particulate Filters , 2001 .
[45] Iakovos Papadimitriou,et al. Development of Real Time Catalyst Model for Engine & Powertrain Control Design , 2009 .
[46] Seungmok Choi,et al. Detailed Investigation of Soot Deposition and Oxidation Characteristics in a Diesel Particulate Filter Using Optical Visualization , 2013 .
[47] K. Kobe. The properties of gases and liquids , 1959 .
[48] Pedro Piqueras,et al. Heat transfer modelling in honeycomb wall-flow diesel particulate filters , 2012 .
[49] Charles R. O'Melia,et al. Clarification of Clean-Bed Filtration Models , 1995 .
[50] John H. Johnson,et al. Wall-Flow Diesel Particulate Filters—Their Pressure Drop and Collection Efficiency , 1989 .
[51] Randy L. Vander Wal,et al. Soot Nanostructure: Definition, Quantification and Implications , 2005 .
[52] Lalji Dixit,et al. Heats of Adsorption of Hydrocarbons on Zeolite Surfaces: A Mathematical Approach , 1999, J. Chem. Inf. Comput. Sci..
[53] Margaritis Kostoglou,et al. Progress in Diesel Particulate Filter Simulation , 2005 .
[54] Alexander Sappok,et al. Soot and Ash Deposition Characteristics at the Catalyst-Substrate Interface and Intra-Layer Interactions in Aged Diesel Particulate Filters Illustrated using Focused Ion Beam (FIB) Milling , 2012 .
[55] Johann C. Wurzenberger,et al. xD+1D Catalyst Simulation-A Numerical Study on the Impact of Pore Diffusion , 2012 .
[56] Enrico Tronconi,et al. Continuous vs. discrete models of nonadiabatic monolith catalysts , 1996 .
[57] Pedro Piqueras,et al. Experimental–theoretical methodology for determination of inertial pressure drop distribution and pore structure properties in wall-flow diesel particulate filters (DPFs) , 2011 .
[58] Ameya Joshi. Review of Vehicle Engine Efficiency and Emissions , 2019, SAE Technical Paper Series.
[59] Francisco José Arnau,et al. Packed bed of spherical particles approach for pressure drop prediction in wall-flow DPFs (diesel particulate filters) under soot loading conditions , 2013 .
[60] K. Lee,et al. Collection of aerosol particles by packed beds , 1979 .
[61] Francisco José Arnau,et al. Development and validation of a radial turbine efficiency and mass flow model at design and off-design conditions , 2016 .
[62] H. Climent,et al. Filtration modelling in wall-flow particulate filters of low soot penetration thickness , 2016 .
[63] Wei Huo,et al. Experimental study of pore diffusion effect on char gasification with CO2 and steam , 2014 .
[64] Gordon G. Parker,et al. A study describing the performance of diesel particulate filters during loading and regeneration - A lumped parameter model for control applications , 2003 .