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A CONTROL ORIENTED CHARGE MIXING AND HCCI COMBUSTION MODEL FOR INTERNAL COMBUSTION ENGINES

机译:内燃机的控制取向电荷混合和HCCI燃烧模型

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This paper describes a control-oriented charge mixing and Homogeneous Charge Compression Ignition (HCCI) combustion model, where the in-cylinder charge is divided into the well-mixed and unmixed zones as the result of charge mixing. Simplified fluid dynamics is used to predict the residual gas fraction at the intake valve closing, which defines the size of the unmixed zone, during real-time simulations. The unmixed zone size not only determines how well the in-cylinder charge is mixed, which affects the start of HCCI combustion, the peak in-cylinder pressure and also the temperature during the combustion process. The developed model was validated in the HIL (hardware-in-the-loop) simulation environment. The HIL simulation results show that the proposed charge mixing and HCCI combustion model provides better agreement with these of the corresponding GT-Power than the previously developed one-zone model.
机译:本文介绍了一种取向的电荷混合和均匀电荷压缩点火(HCCI)燃烧模型,其中缸内电荷作为电荷混合的结果分成良好的混合和未混合的区域。简化的流体动力学用于预测进气门关闭的残余气体馏分,其在实时模拟期间定义未混合区域的尺寸。未混合的区域尺寸不仅确定混合缸内电荷的情况,这影响了HCCI燃烧的开始,汽缸压力峰值和燃烧过程中的温度。在HIL(循环中)仿真环境中验证了开发的模型。 HIL仿真结果表明,所提出的电荷混合和HCCI燃烧模型与比先前开发的单区模型更好地达成了相应的GT功率。

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