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首页> 外文期刊>Journal of combustion >A Comparative CFD Study on Simulating Flameless Oxy-Fuel Combustion in a Pilot-Scale Furnace
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A Comparative CFD Study on Simulating Flameless Oxy-Fuel Combustion in a Pilot-Scale Furnace

机译:中试炉模拟无焰氧燃料燃烧的比较CFD研究

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摘要

The current study presents a method to model the flameless oxy-fuel system, with a comparative approach, as well as validation of the predictions. The validation has been done by comparing the predicted results with previously published experimental results from a 200 kW pilot furnace. A suction pyrometer has been used to measure the local temperature and concentrations of CO, CO_2, and O_2 at 24 different locations. A three-dimensional CFD model was developed and the validity of using different submodels describing turbulence and chemical reactions was evaluated. The standard k-ε model was compared with the realizable k-ε model for turbulence, while Probability Density Function (PDF) with either chemical equilibrium or the Steady Laminar Flamelet Model (SLFM) was evaluated for combustion. Radiation was described using a Discrete Ordinates Model (DOM) with weighted-sum-of-grey-gases model (WSGGM). The smallest deviation between predictions and experiments for temperature (1.2%) was found using the realizable k-ε model and the SLFM. This improvement affects the prediction of gaseous species as well since the deviation between predictions and experiments for CO_2 volume percentages decreased from 6% to 1.5%. This provides a recommendation for model selections in further studies on flameless oxy-fuel combustion.
机译:当前的研究提出了一种使用比较方法对无焰含氧燃料系统进行建模的方法,并验证了预测结果。通过将预测结果与以前发布的200 kW中试炉的实验结果进行比较来进行验证。抽吸高温计已用于测量24个不同位置的局部温度和CO,CO_2和O_2的浓度。建立了三维CFD模型,并评估了使用描述湍流和化学反应的不同子模型的有效性。将标准k-ε模型与可实现的k-ε模型的湍流进行了比较,同时对具有化学平衡或稳态层流小火焰模型(SLFM)的概率密度函数(PDF)进行了燃烧评估。使用具有灰色气体加权总和模型(WSGGM)的离散标准模型(DOM)描述了辐射。使用可实现的k-ε模型和SLFM,发现了温度预测和实验之间的最小偏差(1.2%)。由于CO_2体积百分比的预测与实验之间的偏差从6%降低到1.5%,因此这种改进也影响了气体种类的预测。这为进一步研究无焰含氧燃料燃烧提供了模型选择的建议。

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  • 来源
    《Journal of combustion》 |2016年第2016期|6735971.1-6735971.11|共11页
  • 作者单位

    Ovako Sweden AB, Hofors, Sweden,Department of Materials Science and Engineering, KTH Royal Institute of Technology, Stockholm, Sweden;

    Ovako Sweden AB, Hofors, Sweden;

    AGA AB, The Linde Group, Stockholm, Sweden;

    Department of Materials Science and Engineering, KTH Royal Institute of Technology, Stockholm, Sweden;

    Department of Materials Science and Engineering, KTH Royal Institute of Technology, Stockholm, Sweden;

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