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Numerical and experimental study on flameless oxy-fuel combustion in a pilot-scale and a real-size industrial furnace

机译:先导尺度和实尺寸工业炉中毛烟氧燃料燃烧的数值和实验研究

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Previously validated CFD model was used to simulate the flameless oxy-fuel combustion in a pilot-scale furnace and a full-scale soaking pit furnace. The CFD predictions for temperature were compared with experimental data measured by shielded S-type thermocouples for both furnaces. The results indicate the validity of using shielded S-type thermocouples for temperature measurement, although use of the suction pyrometers renders more accurate results. Afterwards, the validation of previously proposed CFD model for simulating the flamaless oxy-fuel combustion is investigated in a full-scale soaking pit furnace in the production route of steel bars. The validation has been done by comparing the predicted temperatures with experimental data obtained by using S-type thermocouples. For both pilot-scale and full-scale furnaces a three dimensional CFD model with realizable k-epsilon, Probability Density Function (PDF) with Steady Laminar Flamelet Model (SLFM) and Discrete Ordinates Model (DOM) with Sum of The Weighted Gray Gases Model (SGGWM) for simulating turbulence, combustion and radiation was performed. The predicted temperature results show a good agreement with measured data from shielded S-type thermocouples for pilot-scale and full-scale furnace. More specifically the maximum deviation was 3.3% and 9.95% respectively. Afterwards, the simulation results on the full-scale furnace have been used to investigate the non-uniformity of temperature distribution inside the chamber. (C) 2018 Elsevier Ltd. All rights reserved.
机译:以前验证的CFD模型用于在先导型炉和全尺寸浸泡炉中模拟无焰氧燃料燃烧。将温度的CFD预测与通过用于两个炉子的屏蔽S型热电偶测量的实验数据进行比较。结果表明使用屏蔽S型热电偶进行温度测量的有效性,尽管使用抽吸高温计使得更准确的结果。然后,在钢筋生产路径中的全尺寸浸泡坑炉中研究了先前提出了用于模拟燃料氧燃料燃烧的先前提出的CFD模型的验证。通过将预测的温度与通过使用S型热电偶获得的实验数据进行比较来完成验证。对于飞行规模和全尺度熔炉,具有可实现的K-epsilon,概率密度函数(PDF)的三维CFD模型,具有稳定的层流振动模型(SLFM)和离散坐标模型(DOM),其总和灰色气体模型(SGWM)用于模拟湍流,燃烧和辐射进行。预测的温度结果表明,来自屏蔽S型热电偶的测量数据,用于试验规模和全尺寸炉的测量数据。更具体地说,最大偏差分别为3.3%和9.95%。之后,已经使用了全尺寸炉的仿真结果来研究室内温度分布的不均匀性。 (c)2018年elestvier有限公司保留所有权利。

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