首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >New over-fire air arrangement and its air ratio optimization determined by aerodynamic characteristics in a cold small-scale model for a down-fired 660-MW _e utility boiler
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New over-fire air arrangement and its air ratio optimization determined by aerodynamic characteristics in a cold small-scale model for a down-fired 660-MW _e utility boiler

机译:660 MW _e向下燃烧型多用途锅炉冷小型模型中的新的超燃空气布置及其通过空气动力学特性确定的空气比优化

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A new over-fire air (OFA) program, which called arch-supplied OFA, is proposed for Foster Wheeler (FW) type down-fired boiler in this paper. 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 ratio on the aerodynamic field in a small-scale furnace modeled for a 660-MW _e down-fired boiler. As the OFA ratio increases, the penetration depth of the OFA flow increases in the level direction and the turning point from downward to upward of the OFA flow moves to the furnace center. At the same time, the velocity of the F-tier airflow decreases and its ability to bring the arch-injected airflow to deeper positions weakens and the turning point from downward to upward of the F-tier airflow moves to the wall. When the OFA ratio is 20%, the OFA flow could penetrate to the furnace center in the level direction 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 in the vertical direction and the OFA flow in the level direction, an OFA ratio of 20% is recommended for the new OFA arrangement according to the present work.
机译:本文针对福斯特·惠勒(FW)型下燃锅炉提出了一种新的过火空气(OFA)程序,该程序称为“拱型” OFA。 OFA喷嘴设置在靠近炉膛中心的拱形上,并以倾斜角度将OFA气流喷入炉膛。进行了冷气流实验,以确定在以660 MW d向下燃烧锅炉为模型的小型炉中,OFA比率对空气动力学场的影响。随着OFA比率的增加,OFA流动的渗透深度在水平方向上增加,并且OFA流动的从下到上的转折点移动到炉膛中心。同时,F层气流的速度降低,并且其将拱形注入气流带到更深位置的能力减弱,并且F层气流从下到上的转折点移向墙壁。当OFA比率为20%时,OFA气流可以沿水平方向渗透到炉膛中心,并与上流气体完全混合,而拱形喷射气流在下炉膛中具有足够的行进距离和足够的停留时间。因此,考虑到竖直方向上的拱形注入流和水平方向上的OFA流的穿透深度,根据当前的工作,对于新的OFA布置,建议将OFA比设为20%。

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