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Numerical study of a 350 MWe tangentially fired pulverized coal furnace of the As Pontes Power Plant

机译:阿庞特电厂350 MWe切向燃烧煤粉炉的数值研究

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The aim of this investigation is predicting the flow characteristics with real operating conditions of a boiler to better understand the phenomena occurring in the interior of the furnace and to validate the models chosen for the simulation. For this purpose, we have done a numerical study of the flow of a reactive gas mixture with pulverized coal combustion occurring in a tangentially fired furnace of a real power plant. These calculations were developed with the commercial software ANSYS Fluent Furthermore, a home-made code was built to perform some necessary preprocessing and postprocessing calculus. In particular, this code solves zero-dimensional balances that have provided a good agreement with the calculated and measured flow at the exit of the furnace and it is also used to validate the convergence of the numerical algorithm for the three-dimensional simulation. The results obtained from this study show that models and numerical methods selected are appropriate to correctly predict the combustion processes within the furnace. In conclusion, the validation of this numerical model and our home-made code provides the user a complete tool to evaluate the performance of a boiler under different operating conditions, reducing the cost of experimental tests.
机译:这项研究的目的是在锅炉的实际运行条件下预测流动特性,以更好地了解炉子内部发生的现象并验证为仿真选择的模型。为此,我们对真实发电厂的切向燃烧炉中发生的煤粉燃烧反应气体混合物的流动进行了数值研究。这些计算是使用商业软件ANSYS Fluent开发的。此外,还构建了自制代码来执行一些必要的预处理和后处理演算。尤其是,该代码解决了零维平衡问题,这些零维平衡与炉子出口处的计算流量和实测流量提供了很好的一致性,并且还用于验证三维算法数值算法的收敛性。从这项研究中获得的结果表明,所选择的模型和数值方法适合于正确预测炉内的燃烧过程。总而言之,该数值模型和我们的自制代码的验证为用户提供了一个完整的工具,以评估锅炉在不同运行条件下的性能,从而降低了实验测试的成本。

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