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Experimental and numerical studies on the gas velocity deviation in a 600 MWe tangentially fired boiler

机译:600 MWe切向燃烧锅炉燃气速度偏差的实验和数值研究

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摘要

In this paper, a comprehensive method containing cold-state modeling experiment, cold-state numerical simulation, and hot-state numerical simulation is employed to analyze the aerodynamic field in a 600 MWe tangentially fired pulverized boiler. To investigate the non-uniformity characteristics of flow field distribution in the horizontal flue under deep air-staged condition by this method, a major attention is paid to the gas velocity deviation in front of the final super-heater. Experiments at the cases of various yaw angles of separate over-fire air (SOFA) are carried out under a cold model of the large utility boiler with a roughly 1:28 scale. And the cold model is equipped with 3D-printed nozzles arranged in the four corners. Moreover, the corresponding cases are conducted by cold-state numerical simulation in the cold model furnace, and hot-state numerical simulation in the original furnace. The results show that the experimental data are in general agreement with simulated results in the cold modeling furnace. And through comparison of velocity profile at the same dimensionless furnace height, the results of cold state model show the similar characteristics of gas velocity distribution that presented in the hot-state situation of the original furnace. Thus, through reasonable cold-state modeling, a detailed velocity distribution can be obtained to give a good insight into the gas velocity deviation characteristics in the horizontal flue. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文采用冷态模拟实验,冷态数值模拟和热态数值模拟的综合方法,对600 MWe切向燃烧粉煤锅炉的空气动力场进行了分析。为了研究这种方法在深空条件下水平烟道内流场分布的不均匀性,主要研究了最终过热器前面的气体速度偏差。在大型公用事业锅炉的冷模型下,以大约1:28的比例在单独偏火空气(SOFA)的各种偏航角情况下进行了实验。冷模型在四个角都装有3D打印的喷嘴。此外,通过在冷模型炉中进行冷态数值模拟,并在原始炉中进行热态数值模拟来进行相应的情况。结果表明,实验数据与冷成型炉的模拟结果基本吻合。并且通过比较相同无量纲炉高处的速度分布,冷态模型的结果显示出气体速度分布的特性与原始炉的热态情况相似。因此,通过合理的冷态建模,可以获得详细的速度分布,从而可以更好地了解水平烟道中的气体速度偏差特性。 (C)2016 Elsevier Ltd.保留所有权利。

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