一种用于模拟稀工况燃烧不稳定性的混合型2区/波发动机燃烧模型

K. Edwards, R. M. Wagner, V. Chakravarthy, C. Daw, Johney B. Green
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引用次数: 8

摘要

内燃机在高废气再循环(EGR)条件下运行,以减少nox排放,并促进HCCI等增强燃烧模式。然而,在一定条件下的高EGR也促进了循环间的非线性反馈,导致燃烧不稳定性和循环变异性的发展。我们采用两区现象燃烧模型来模拟高度稀释条件下燃烧不稳定性的开始,并说明这些不稳定性对排放和燃油效率的影响。两区缸内燃烧模型通过Simulink接口与WAVE发动机仿真代码耦合,可以快速模拟数百个连续的发动机循环,包括许多外部发动机参数影响。我们演示了这种混合模型如何用于研究自适应反馈控制策略,以减少循环燃烧不稳定性,从而保持燃油效率并减少排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Hybrid 2-Zone/WAVE Engine Combustion Model for Simulating Combustion Instabilities During Dilute Operation
Internal combustion engines are operated under conditions of high exhaust gas recirculation (EGR) to reduce NO x emissions and promote enhanced combustion modes such as HCCI. However, high EGR under certain conditions also promotes nonlinear feedback between cycles, leading to the development of combustion instabilities and cyclic variability. We employ a two-zone phenomenological combustion model to simulate the onset of combustion instabilities under highly dilute conditions and to illustrate the impact of these instabilities on emissions and fuel efficiency. The two-zone in-cylinder combustion model is coupled to a WAVE engine-simulation code through a Simulink interface, allowing rapid simulation of several hundred successive engine cycles with many external engine parametric effects included. We demonstrate how this hybrid model can be used to study strategies for adaptive feedback control to reduce cyclic combustion instabilities and, thus, preserve fuel efficiency and reduce emissions.
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