Control-Oriented Physics-Based NOX Emission Model for a Diesel Engine With Exhaust Gas Recirculation

Author:

Duraiarasan Saravanan1,Salehi Rasoul1,Stefanopoulou Anna1,Mahesh Siddharth2,Allain Marc2

Affiliation:

1. Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48105

2. Detroit Diesel Corporation, Detroit, MI 48239

Abstract

Abstract Stringent NOX emission norm for heavy duty vehicles motivates the use of predictive models to reduce emissions of diesel engines by coordinating engine parameters and aftertreatment. In this paper, a physics-based control-oriented NOX model is presented to estimate the feedgas NOX for a diesel engine. This cycle-averaged NOX model is able to capture the impact of all major diesel engine control variables including the fuel injection timing, injection pressure, and injection rate, as well as the effect of cylinder charge dilution and intake pressure on the emissions. The impact of the cylinder charge dilution controlled by the engine exhaust gas recirculation (EGR) in the highly diluted diesel engine of this work is modeled using an adiabatic flame temperature predictor. The model structure is developed such that it can be embedded in an engine control unit without any need for an in-cylinder pressure sensor. In addition, details of this physics-based NOX model are presented along with a step-by-step model parameter identification procedure and experimental validation at both steady-state and transient conditions. Over a complete federal test procedure (FTP) cycle, on a cumulative basis the model prediction was more than 93% accurate.

Publisher

ASME International

Reference8 articles.

1. Experimental and Theoretical Study of Nitric Oxide Formation in Internal Combustion Engines;Lavoie;Combust. Sci Tech.,1970

2. Sensitivity Study of a NOx Estimation Model for On-Board Applications;Arrègle,2008

3. Semiempirical in-Cylinder Pressure Based Model for NOX Prediction Oriented to Control Applications;Guardiola;Appl. Therm. Eng.

4. Detailed Evaluation of a New Semi-Empirical Multi-Zone NOx Model by Application on Various Diesel Engine Configurations;Savva,2012

5. Semi-physical Mean-Value NOx model for Diesel Engine Control;Quérel;Control Eng. Pract.,2015

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