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A Control-Oriented Charge Mixing and Two-Zone HCCI Combustion Model

机译:面向控制的电荷混合和两区HCCI燃烧模型

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摘要

A control-oriented engine model is often used in the hardware-in-the-loop (HIL) simulation environment for developing and validating the corresponding control strategies. For homogeneous charge compression ignition (HCCI) combustion, mixture heterogeneity should be considered in the control-oriented model to provide accurate combustion phase prediction. This paper describes a two-zone 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 before the combustion phase starts, which defines the mass of the unmixed zone, during real-time simulations. The unmixed-zone size determines not only how well the in-cylinder charge is mixed, which affects the start of HCCI combustion, but also the resulting peak in-cylinder pressure and temperature during the combustion process. The developed model was validated in the HIL simulation environment. The HIL simulation results show that the proposed charge mixing and HCCI combustion model provides better agreement with the corresponding GT-Power simulation results than the previously developed one-zone model.
机译:在硬件在环(HIL)仿真环境中,经常使用面向控制的引擎模型来开发和验证相应的控制策略。对于均质充量压燃(HCCI)燃烧,应在面向控制的模型中考虑混合物的不均匀性,以提供准确的燃烧相位预测。本文介绍了一种两区HCCI燃烧模型,其中,缸内装料由于装料混合而分为充分混合区和未混合区。在实时模拟过程中,简化的流体动力学可用于预测燃烧阶段开始之前的残留气体分数,从而确定未混合区域的质量。未混合区的大小不仅决定了缸内装料的混合程度如何(这会影响HCCI燃烧的开始),而且还决定了燃烧过程中产生的缸内峰值压力和温度。所开发的模型在HIL仿真环境中得到了验证。 HIL仿真结果表明,与以前开发的一区模型相比,所提出的电荷混合和HCCI燃烧模型与相应的GT-Power仿真结果具有更好的一致性。

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