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A Quasi-dimensional Model of the Ignition Delay for Combustion Modeling in Spark-Ignition Engines

机译:用于火花点火发动机燃烧建模的点火延迟的准维模型

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摘要

Quasi-dimensional (QD) modeling of combustion in spark-ignition (SI) engines allows to describe the most relevant processes of heat release. Here, a submodel for the ignition delay is introduced and applied. The start of combustion is considered from ignition to the crank angle of 5% burned gas fraction. The introduced physical approach identifies the turbulent propagation velocity of the initiated kernel by taking into account early flame expansion and geometric restrictions of the flame propagation. The model is applied to stationary operation within an entire engine map of a turbocharged direct injection SI engine with fully variable valvetrain. Based on provided cycle-averaged input data, the model delivers good results within the margins of measured cycle-to-cycle fluctuations. Thus, it contributes to the assessment of the interplay between engine, engine control unit, drivetrain, and vehicle dynamics, hence making a step toward optimization and virtual engine calibration.
机译:火花点火(SI)发动机燃烧的准维(QD)建模可以描述最相关的放热过程。在此,介绍并应用了点火延迟子模型。从点火到燃烧的燃气分数为5%的曲柄角被认为是燃烧的开始。引入的物理方法通过考虑早期火焰膨胀和火焰传播的几何限制来确定起始核的湍流传播速度。该模型应用于具有完全可变气门机构的涡轮增压直喷SI发动机的整个发动机图内的平稳运行。基于提供的周期平均输入数据,该模型在所测量的周期间波动范围内提供了良好的结果。因此,它有助于评估发动机,发动机控制单元,传动系统和车辆动力学之间的相互作用,从而迈向优化和虚拟发动机校准的一步。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第7期|071502.1-071502.7|共7页
  • 作者单位

    Powertrain Development, BMW Group, Muenchen 80788, Germany;

    Powertrain Development, BMW Group, Munchen 80788, Germany;

    Institute of Engineering Thermodynamics, Friedrich-Alexander-Universitaet Erlangen-Nuernberg, Erlangen 91058, Germany;

    Numerical Thermo-Fluid Dynamics, Department of Energy Process Engineering and Chemical Engineering, Technische Universitaet Bergakademie Freiberg, Freiberg 09599, Germany;

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