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Systematic Reduction of Detailed Chemical Reaction Mechanisms for Engine Applications

机译:系统地减少发动机应用中详细的化学反应机理

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摘要

In this work, we apply a sequence of concepts for mechanism reduction on one reaction mechanism including novel quality control. We introduce a moment-based accuracy rating method for species profiles. The concept is used for a necessity-based mechanism reduction utilizing 0D reactors. Thereafter a stochastic reactor model for internal combustion engines is applied to control the quality of the reduced reaction mechanism during the expansion phase of the engine. This phase is sensitive on engine out emissions, and is often not considered in mechanism reduction work. The proposed process allows to compile highly reduced reaction schemes for computational fluid dynamics application for internal combustion engine simulations. It is demonstrated that the resulting reduced mechanisms predict combustion and emission formation in engines with accuracies comparable to the original detailed scheme.
机译:在这项工作中,我们对一种反应机制(包括新颖的质量控制)应用一系列机制还原的概念。我们介绍了一种基于矩的物种轮廓准确度评估方法。该概念用于利用0D反应堆的基于必要性的机制简化。此后,将内燃发动机的随机反应堆模型应用于控制发动机膨胀阶段的还原反应机理的质量。该阶段对发动机熄火排放很敏感,在减少机构的工作中通常不考虑这一阶段。所提出的过程允许编译高度简化的反应方案,以用于内燃机模拟的计算流体动力学应用。结果表明,减少的机构可以预测发动机燃烧和排放的形成,其准确性可与原始详细方案相比。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第9期|091701.1-091701.9|共9页
  • 作者单位

    Thermodynamics and Thermal Process Engineering, Brandenburg University of Technology, Siemens-Halske-Ring 8, Cottbus, Germany;

    Thermodynamics and Thermal Process Engineering, Brandenburg University of Technology, Siemens-Halske-Ring 8, Cottbus, Germany;

    Thermodynamics and Thermal Process Engineering, Brandenburg University of Technology, Siemens-Halske-Ring 8, Cottbus, Germany;

    Thermodynamics and Thermal Process Engineering, Brandenburg University of Technology, Siemens-Halske-Ring 8, Cottbus, Germany;

    LOGE Deutschland GmbH, Technology and Research Centre, Burger Chaussee 25, Cottbus, Germany;

    LOGE Deutschland GmbH, Technology and Research Centre, Burger Chaussee 25, Cottbus, Germany;

    Department of Applied Mechanics, Chalmers University of Technology, Hörsalsvägen 7a, Göteborg, Sweden;

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