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Experimental and Numerical Study of Flame Kernel Formation Processes of Propane-Air Mixture in a Pressurized Combustion Vessel

机译:加压燃烧容器中丙烷 - 空气混合物火焰籽粒形成过程的实验性和数值研究

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Fuel lean combustion and exhaust gas dilution are known to increase the thermal efficiency and reduce NOx emissions. In this study, experiments are performed to understand the effect of equivalence ratio on flame kernel formation and flame propagation around the spark plug for different low turbulent velocities. A series of experiments are carried out for propane-air mixtures to simulate engine-like conditions. For these experiments, equivalence ratios of 0.7 and 0.9 are tested with 20 percent mass-based exhaust gas recirculation (EGR). Turbulence is generated by a shrouded fan design in the vicinity of J-spark plug. A closed loop feedback control system is used for the fan to generate a consistent flow field. The flow profile is characterized by using Particle Image Velocimetry (PIV) technique. High-speed Schlieren visualization is used for the spark formation and flame propagation. To support the experimental activity and to better understand the effects of local flow and turbulence on the combustion process, CFD simulations were carried out at both reacting and non-reacting conditions using the OpenFOAM code with suitable libraries (Lib-ICE) developed for combustion modeling. The full vessel geometry was considered and the rotation of the fan, used to generate turbulence and velocity fields, was modeled. In this way it was possible to identify the expected combustion regimes and to clarify the effects of the spark-plug geometry on the flame propagation process.
机译:已知燃料贫燃烧和废气稀释量增加热效率并减少NOx排放。在该研究中,进行实验以了解对火焰籽粒形成的等效比和火焰传播的效果,并在火花塞周围进行不同的低湍流速度。对丙烷 - 空气混合物进行一系列实验,以模拟发动机状条件。对于这些实验,用20%的基于质量的废气再循环(EGR)测试0.7和0.9的等效比。湍流由J-Spark插头附近的罩风扇设计产生。闭环反馈控制系统用于风扇以产生一致的流场。流程轮廓的特征在于使用粒子图像速度法(PIV)技术。高速Schlieren可视化用于火花形成和火焰传播。为了支持实验活动并更好地了解局部流动和湍流对燃烧过程的影响,CFD模拟在反应和非反应条件下进行了使用开放式燃烧​​建模的合适文库(LIB-ICE)的反应和非反应条件。考虑了完整的血管几何形状,并建模了用于产生湍流和速度场的风扇的旋转。以这种方式,可以识别预期的燃烧制度,并阐明火花塞几何形状对火焰传播过程的影响。

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