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Experimental and Numerical Investigation of the Idle Operating Engine Condition for a GDI Engine

机译:GDI发动机怠速工况的实验和数值研究

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The increased limitations to both NO_x and soot emissions have pushed engine researchers to rediscover gasoline engines. Among the many technologies and strategies, gasoline direct injection plays a key-role for improving fuel economy and engine performance. The paper aims to investigate an extremely complex task such as the idle operating engine condition when the engine runs at very low engine speeds and low engine loads and during the warm-up. Due to the low injection pressure and to the null contribution of the turbocharger, the engine condition is far from the standard points of investigation. Taking into account the warm-up engine condition, the analyses are performed with a temperature of the coolant of 50℃. The paper reports part of a combined numerical and experimental synergic activity aiming at the understanding of the physics of spray/wall interaction within the combustion chamber and particular care is used for air/fuel mixing and the combustion process analyses. In order to properly describe the engine condition, different injection strategies are investigated Late and early injection strategies are deeply analyzed and compared in terms of combustion stability and pollutant emissions. UV-visible imaging and spectral measurements are carried out in real engine with wide optical accesses... Measurements are performed in the optically accessible combustion chamber realized by modifying a real engine. The cylinder head was modified in order to allow in the fourth cylinder the visualization of the fuel injection and the combustion process with high spatial and temporal resolution. The 3D-CFD engine simulations are reproduced by means the commercial code Star-CD. Due to the warm-up condition and the many physical sub-models a numerical methodology is implemented and particular care is used to boundaries conditions analyses. CFD analysis is used to find a possible explanation of the high cycle to cycle variability. The experimental and numerical comparisons, in terms fuel mixing and front flame propagation, give an explanation of the idle condition.
机译:NO_x和烟尘排放的限制增加,促使发动机研究人员重新发现了汽油发动机。在许多技术和策略中,汽油直喷在提高燃油经济性和发动机性能方面起着关键作用。本文旨在研究一个非常复杂的任务,例如当发动机以非常低的发动机转速和较低的发动机负载运行以及在预热期间,发动机处于空转状态。由于较低的喷射压力和涡轮增压器的无效作用,发动机状况远远没有达到标准的研究标准。考虑到发动机的预热情况,分析是在冷却液温度为50℃的条件下进行的。该论文报告了结合的数值和实验协同活动的一部分,旨在了解燃烧室内的喷雾/壁相互作用的物理原理,并特别注意进行空气/燃料混合和燃烧过程分析。为了正确地描述发动机状况,研究了不同的喷射策略,并根据燃烧稳定性和污染物排放对后期和早期喷射策略进行了深入分析和比较。紫外可见成像和光谱测量是在具有广泛光学访问权限的真实发动机中进行的。测量是在通过修改真实发动机而实现的可光学访问的燃烧室中进行的。修改了气缸盖,以便在第四个气缸中以高时空分辨率可视化燃料喷射和燃烧过程。通过商业代码Star-CD复制3D-CFD引擎模拟。由于预热条件和许多物理子模型,因此采用了数值方法,并且要特别注意边界条件分析。 CFD分析用于找到周期变化高的可能解释。在燃料混合和前部火焰传播方面的实验和数值比较,对空转条件进行了解释。

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