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Numerical analysis of a non-steady state phenomenon during the ignition process in a condensing boiler

机译:凝汽器点火过程中非稳态现象的数值分析

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This paper presents the most appropriate numerical approach for investigation of the ignition phenomena of the premixed confined combustion in a condensing boiler. A transient simulation with the coupling of the burning velocity model was sufficient enough to describe fully the phenomena that are responsible for the ignition sequence and the flame stabilization, representing most of the actual ignition problems in general. Detailed simulation investigation with the ignition model leads to better comprehension of the whole flame stabilization process and, as a consequence, it facilitates the optimization potential of the global ignition process in boilers. Four different ignition power loads were observed in the investigation. Also, the ratio between oxidizer (air in our case) and the fuel (Methane) was based on the normal combustion process for the described condensing boiler. The numerical results were validated with the experimental set up and testing. Results comparison shows very good correlation of numerical simulation with the experimental case. The ignition times both tested and simulated, that have a significant impact on flame stabilization, are in very good correlation. Also, very good correlations were obtained between the pressure profiles of the numerical and experimental studies.
机译:本文提出了一种最合适的数值方法,用于研究冷凝锅炉中预混密闭燃烧的着火现象。结合燃烧速度模型进行的瞬态仿真足以充分描述导致点火顺序和火焰稳定的现象,通常代表大多数实际点火问题。使用点火模型进行详细的模拟研究可以更好地理解整个火焰稳定过程,因此可以促进锅炉整体点火过程的优化潜力。在研究中观察到四个不同的点火功率负载。同样,氧化剂(在我们的情况下为空气)与燃料(甲烷)之间的比率基于上述冷凝锅炉的正常燃烧过程。实验结果验证了数值结果。结果比较表明,数值模拟与实验案例具有很好的相关性。经过测试和模拟的点火时间对火焰稳定度有很大影响,它们之间具有很好的相关性。同样,在数值研究和实验研究的压力分布之间获得了很好的相关性。

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