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首页> 外文期刊>International journal of engine research >A control-oriented combustion model for a turbulent jet ignition engine using liquid fuel
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A control-oriented combustion model for a turbulent jet ignition engine using liquid fuel

机译:一种用于使用液体燃料的湍流喷射点火发动机的面向控制的燃烧模型

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摘要

A control-oriented engine model is necessary for developing and validating the associated engine control strategies. For engines equipped with the turbulent jet ignition system, the interaction between the pre- and main-combustion chambers should be considered in the control-oriented model for model-based control strategies that optimize the overall thermal efficiency in real-time. Therefore, a two-zone combustion model based on the newly proposed parameter-varying Wiebe function is proposed. Since the engine uses the liquid fuel, a pre-chamber air-fuel mixing and vaporization model are also developed. The model was validated using the experimental data from a single-cylinder turbulent jet ignition engine under different operational conditions, and the simulation results show a good agreement with the experimental data. The relative simulation error of the in-cylinder pressure is less than 8%. For most of the other pressure-related variables, such as indicated mean effective pressure and main-chamber burn duration, the relative errors are within 5%.
机译:面向控制的发动机模型对于开发和验证相关的发动机控制策略是必要的。对于配备有湍流喷射点火系统的发动机,预先和主燃室之间的相互作用应考虑在面向控制的模型中,用于基于模型的控制策略,可实时优化整体热效率。因此,提出了一种基于新提出的参数变化的Wiebe功能的双区燃烧模型。由于发动机使用液体燃料,因此也开发了预室空气燃料混合和汽化模型。使用来自不同操作条件的单缸湍流喷射点火发动机的实验数据验证了该模型,仿真结果与实验数据吻合良好。缸内压力的相对模拟误差小于8%。对于大多数其他相关的压力相关变量,例如指示的平均有效压力和主腔室烧伤持续时间,相对误差在5%范围内。

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