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Numerical simulation of two-stage combustion in SI engine with prechamber

机译:带预燃室的SI发动机两阶段燃烧的数值模拟

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Burning lean mixture in spark ignition (SI) engine leads to decrease in temperature of combustion process and is one of the methods of limiting nitric oxide emission and increasing the engine efficiency. The two-stage combustion system of stratified mixture (engine with prechamber) can be an effective method of lean mixture combustion. The paper presents the results of three-dimensional modeling of fuel mixture preparation and combustion in SI engine with sectional combustion chamber powered by liquefied fuel. Three dimensional modeling was performed in KIVA-3V code. The modeling results were compared with results obtained from the analysis of experimental measurements of two-stage combustion test engine operating at the Institute of Internal Combustion Engines and Control Engineering (Czestochowa University of Technology). The performed simulations of the combustion process provided data concerning the spatial and temporal distributions of turbulent kinetic energy, pressure, temperature and nitric oxides concentration in the combustion chambers of the engine. The engine model with two-stage combustion system properly represents the real processes which occur in the combustion chambers of the test engine. Pressure and temperature courses in function of CA obtained from the experiment and modeling were in good qualitative and quantitative consistence. Comparison of modeled and measured nitric oxide emissions revealed relatively significant discrepancies. In case of λ= 1.4, the measured values of NO_x concentration were 1.75 times higher than the modeled values. In case of λ = 2.0, the modeled and measured values were close to each other and were within the range of measurement error.
机译:在火花点火(SI)发动机中燃烧稀薄混合物会导致燃烧过程温度降低,并且是限制一氧化氮排放并提高发动机效率的方法之一。分层混合物的两级燃烧系统(带预燃室的发动机)可以是稀薄混合物燃烧的有效方法。本文介绍了在具有由液化燃料驱动的分段燃烧室的SI发动机中混合气制备和燃烧的三维建模结果。以KIVA-3V代码进行了三维建模。将建模结果与通过分析内燃机和控制工程研究所(琴斯托霍瓦工业大学)的两级燃烧试验发动机的实验测量结果获得的结果进行比较。进行的燃烧过程模拟提供了有关发动机燃烧室内湍动能,压力,温度和一氧化氮浓度的时空分布的数据。具有两级燃烧系统的发动机模型正确地代表了在测试发动机的燃烧室中发生的实际过程。从实验和模型获得的CA功能的压力和温度过程在定性和定量上具有良好的一致性。模拟和测量的一氧化氮排放量的比较显示出相对较大的差异。在λ= 1.4的情况下,NO_x浓度的测量值比模型值高1.75倍。在λ= 2.0的情况下,模型值和测量值彼此接近,并且在测量误差范围内。

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