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Mean Value Engine Model Using Object Oriented Modeling
Technical Paper
2008-01-0982
ISSN: 0148-7191, e-ISSN: 2688-3627
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English
Abstract
Object-oriented or component-based modeling greatly facilitates model development for large and complex multi-domain physical systems. It uses predefined and reusable component models. Connections between component models represent actual physical connections. Non-physical connections are not needed. Therefore, the model is much easier to be understood and used by general model users.
The purpose of this paper is to demonstrate that object-oriented modeling is very suitable for mean-value engine models. Models for throttle, intake manifold, EGR valve and cylinder are developed separately and assemble together through connections. The component models are built from first principles in thermodynamics. Bidirectional flows are allowed at all ports for every component. The intake manifold uses mass, temperature and EGR mass fraction as state variables. Simulation results of a typical engine are included.
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Citation
Chen, J., "Mean Value Engine Model Using Object Oriented Modeling," SAE Technical Paper 2008-01-0982, 2008, https://doi.org/10.4271/2008-01-0982.Also In
References
- Astrom, K. Elmqvist, H. Mattson, S. “Evolution of Continuous-Time Modeling and Simulation” The 12th European Simulation Multiconference 1998
- Guzzella, L. Onder, C. Introduction to Modeling and Control of Internal Combustion Engine Systems Springer-Verlag 2004
- Kolmanovsky, I. Moraal, P. Nieuwstadt, M. Stefanopoulu, A. “Issues in Modeling and Control of Intake Flow in Variable Geometry Turbocharged Engines” 18th IFIP Conference on System Modelling and Optimization 1998
- Elmqvist H. Tummescheit H. Otter, M. “Object-oriented Modeling of Thermo-fluid Systems” Modelica Conference 2003
- Casella F. Otter M. Proelss k. Richter C. Tummescheit, H. “The Modelica Fluid and Media Library for Modeling of Incompressible and Compressible Thermo-Fluid Pipe Networks” Modelica Conference 2006
- Pneumatic fluid power - Components using compressible fluid - Determination of flow rate characteristics International Organization for Standardization 1989
- Taylor, C. The Internal Combustion Engine in Theory and Practice 1 The MIT Press 1994