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Effect of over-fire air velocity on the aerodynamic characteristics in a cold model of an arch-fired boiler with new over-fire air arrangement

机译:具有新型过火空气安排的拱燃锅炉冷模型空气动力学特性对空气动力学特性的影响

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A new over-fire air (OFA) program is proposed for Foster Wheeler (FW) type arch-fired boiler: the OFA nozzles are setting on arches near the furnace center and emitting OFA flow into the furnace at an inclined angle. Cold airflow experiments were conducted to determine the effect of the OFA velocity on the aerodynamic field in a small-scale furnace modeled for a 660-MW_e arch-fired boiler. As the OFA velocity increases, the penetration depth of the OFA flow increases and the turning point of the OFA flow moves to the furnace center. At the same time, the vertical velocity of arch-injected airflow reduced faster because of the attracted effect of the OFA flow with higher velocity. When the OFA velocity is 22.39m/s (corresponding to 30m/s in the actual boiler), the OFA flow could penetrate to the furnace center and mix with the upflowing gas completely, while the arch-injected airflow have sufficient travel distance and enough residence time in the lower furnace. Thus, considering the penetration depth of arch-injected flow and the OFA flow, an OFA velocity of 22.39m/s recommended according to the present work.
机译:提出了一种新的过失空气(OFA)计划,为扶持机(FW)型拱燃锅炉:OFA喷嘴在炉子中心附近的拱门上设定,并以倾斜角度发射流入炉子。进行了冷气流实验以确定为660-MW_E弓燃烧锅炉模型的小型炉中的空气动力场对空气动力场的影响。随着OFA速度增加,OFA流量的穿透深度和OFA流的转折点移动到炉子中心。同时,由于OFA流具有较高速度的流动的吸引效果,拱形注入气流的垂直速度降低了更快。当速度为22.39m / s(对应于实际锅炉中的30m / s)时,OFA流可以穿透炉子中心并完全与挤出气体混合,而拱形注射的气流有足够的行程距离和足够的行程在下炉中停留时间。因此,考虑到拱形注入的流动和流量的穿透深度,根据本工作推荐的22.39m / s的速度。

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