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Numerical Simulation of A Ceramic Furnace Burner. Capacity of Turbulent and Radiation Models

机译:陶瓷炉燃烧器的数值模拟。湍流和辐射模型的能力

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摘要

We intend in this work to model an industrial burner replica of the ceramic tunnel furnace of the Ceramics Modern Society (SOMOCER, TUNISIA). This study aims to evaluate the ability of turbulence and radiation models to predict the dynamics and heat transfer fields. The study is conducted by means of numerical simulations in presence of a reactive flow using the commercial code FLUENT. The 3D Navier-Stokes equations and four species transport equations are solved with the eddy-dissipation (ED) combustion model. We use three turbulence models (k-ε standard, k-ε RNG, and RSM) and two radiation models (DTRM and DO). The obtained results demonstrate that the k-ε standard turbulence model is unable to predict the flow characteristics whereas; the k-ε RNG and RSM models give a satisfying agreement with the experiments. Suitable results are provided by the DTRM radiation model; whereas, those given by the DO model can be improved.
机译:我们打算在这项工作中对现代陶瓷协会(突尼斯SOMOCER)的陶瓷隧道炉的工业燃烧器复制品进行建模。这项研究旨在评估湍流和辐射模型预测动力学和传热场的能力。该研究是使用商业代码FLUENT在存在反应流的情况下通过数值模拟进行的。利用涡耗散(ED)燃烧模型求解了3D Navier-Stokes方程和4种输运方程。我们使用三个湍流模型(k-ε标准,k-εRNG和RSM)和两个辐射模型(DTRM和DO)。获得的结果表明,k-ε标准湍流模型无法预测流动特性,而; k-εRNG和RSM模型与实验结果令人满意。 DTRM辐射模型提供了合适的结果;而DO模型给出的结果可以得到改善。

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