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Numerical study of geometric parameters effecting temperature and thermal efficiency in a premix multi-hole flat flame burner

机译:预混多孔平面火焰燃烧器中影响温度和热效率的几何参数的数值研究

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This paper investigates the geometric parameters related to thermal efficiency and pollution emission of a multi-hole flat flame burner. Recent experimental studies indicate that such burners are significantly influenced by both the use of distribution mesh and the size of the diameter of the main and retention holes. The present study numerically simulated methane-air premixed combustion using a two-step mechanism and constant mass diffusivity for all species. The results indicate that the addition of distribution mesh leads to uniform flow and maximum temperature that will reduce NOx emissions. An increase in the diameter of the main holes increased the mass flow which increased the temperature, thermal efficiency and NOx emissions. The size of the retention holes should be considered to decrease the total flow velocity and bring the flame closer to the burner surface, although a diameter change did not considerably improve temperature and thermal efficiency. Ultimately, under temperature and pollutant emission constraints, the optimum diameters of the main and retention holes were determined to be 5 and 1.25 mm, respectively. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了与多孔平板火焰燃烧器的热效率和污染排放有关的几何参数。最近的实验研究表明,这种燃烧器受分配网的使用以及主孔和保持孔直径大小的影响很大。本研究使用两步机制和恒定质量扩散率对所有物种进行了甲烷-空气预混燃烧的数值模拟。结果表明,分配网的添加导致流量均匀和最高温度,这将减少NOx排放。主孔直径的增加增加了质量流量,从而增加了温度,热效率和NOx排放量。尽管直径的变化并不能显着提高温度和热效率,但应考虑保留孔的大小,以降低总流速并使火焰更靠近燃烧器表面。最终,在温度和污染物排放的限制下,主孔和固位孔的最佳直径分别确定为5和1.25 mm。 (C)2017 Elsevier Ltd.保留所有权利。

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