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A Cold Model Aerodynamical Test of Air-Staged Combustion in a Tangential Firing Utility Boiler

机译:切向燃烧公用锅炉中空燃的冷模型空气动力学试验

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The purpose of this paper is to present the flow field in the 300MW tangential firing utility boiler that used the Low NOx Concentric Firing System (LNCFS). Using the method of cold isothermal simulation ensures the geometric and boundary condition similarity. At the same time the condition of self-modeling is met. The experimental results show that the mixture of primary air and secondary air becomes slower, the average turbulence magnitude of the main combustion zone becomes less and the relative diameter of the tangential firing enlarges when the secondary air deflection angle increases. When the velocity pressure ratio of the secondary air to the primary air (p2/p1) enlarges, the mixture of the secondary air and the primary air becomes stronger, the average turbulence magnitude of the main combustion zone increases, and the relative diameter of the tangential firing becomes larger. Because the over fire air (OFA) laid out near the wall has a powerful penetration, the relative diameter of the tangential firing on the section of the OFA is very little, but the average turbulence magnitude is great. When the velocity pressure ratio of the OFA to the primary air pOFA/p1 increases, the relative diameter of the tangential firing on the section of the OFA grows little, the average turbulence magnitude becomes larger and the penetration of the OFA becomes more powerful.
机译:本文的目的是介绍使用低NOx同心点火系统(LNCFS)的300MW切向燃烧电站锅炉的流场。使用冷等温模拟的方法可确保几何条件和边界条件相似。同时满足自建模的条件。实验结果表明,随着二次空气偏转角的增大,一次空气与二次空气的混合速度变慢,主燃烧区的平均湍流度减小,切向点火的相对直径增大。当二次空气与一次空气的速度压力比(p2 / p1)增大时,二次空气和一次空气的混合气体变得更强,主燃烧区的平均湍流量增加,而燃烧室的相对直径增大。切向点火会变大。由于壁附近布置的过火(OFA)具有很强的穿透力,因此在OFA截面上切向点火的相对直径很小,但平均湍流强度很大。当OFA与一次空气的压力比pOFA / p1增加时,在OFA截面上切向点火的相对直径很小,平均湍流强度变大,OFA的穿透力变强。

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