首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering >A multi-zone combustion model with detailed chemistry including cycle-to-cycle dynamics for diesel engine control design
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A multi-zone combustion model with detailed chemistry including cycle-to-cycle dynamics for diesel engine control design

机译:用于柴油发动机控制设计的具有详细化学信息的多区域燃烧模型,包括逐周期动态特性

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摘要

This paper reviews the research activities within the subproject B1 Model Reduction for Low-Temperature Combustion Processes through CFD-Simulations and Multi-Zone Models of the Collaborative Research Centre SFB 686 – Model-Based Control of Homogenized Low-Temperature Combustion. The SFB 686 is carried out at RWTH Aachen University, Germany and Bielefeld University, Germany, and is funded by the German Research Foundation (DFG). This paper thereby summarizes the outcome of various publications by the authors, with the appropriate references given in the individual sections. Additionally, some new results are introduced. The particular subject of this work is a dynamic simulation strategy for premixed charge compression ignition (PCCI) combustion that can be used in closed-loop control development. A detailed multi-zone chemistry model for the high-pressure part of the engine cycle is extended by a mean value gas exchange model accounting for the low-pressure part. Thus, an efficient model capable of describing PCCI combustion is sufficiently well established. In order to capture cycle-to-cycle dynamics, identified system dynamics influencing the input parameters are incorporated. For this, a Wiener model is set up that uses the combustion model as a nonlinear system representation. In this way, a dynamic nonlinear model for the representation of the controlled plant Diesel engine is created. The model is validated against transient experimental engine data.
机译:本文回顾了子项目B1通过合作研究中心SFB 686(基于模型的均质低温燃烧控制)的CFD模拟和多区域模型进行的低温燃烧过程简化模型的研究活动。 SFB 686在德国亚琛工业大学和德国比勒费尔德大学进行,由德国研究基金会(DFG)资助。因此,本文总结了作者发表的各种出版物的成果,并在各个部分中给出了适当的参考文献。此外,引入了一些新结果。这项工作的特定主题是用于预混合充量压缩点火(PCCI)燃烧的动态仿真策略,该策略可用于闭环控制开发中。通过考虑低压部分的平均值气体交换模型扩展了发动机循环高压部分的详细多区域化学模型。因此,能够很好地建立能够描述PCCI燃烧的有效模型。为了捕获周期之间的动态变化,已识别的影响输入参数的系统动态变化被并入。为此,建立了使用燃烧模型作为非线性系统表示的维纳模型。以这种方式,创建了用于表示受控工厂柴油机的动态非线性模型。该模型针对瞬态实验发动机数据进行了验证。

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