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Computational Fluid Dynamic Simulations Of Coal-fired Utility Boilers: An Engineering Tool

机译:燃煤电站锅炉的计算流体动力学模拟:一种工程工具

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The objective of this study was to develop an engineering tool by which the combustion behavior of coals in coal-fired utility boilers can be predicted. We presented in this paper that computational fluid dynamic (CFD) codes can successfully predict performance of- and emission from- full-scale pulverized-coal utility boilers of various types, provided that the model parameters required for the simulation are properly chosen and validated. For that purpose we developed a methodology combining measurements in a 50 kW pilot-scale test facility with CFD simulations using the same CFD code configured for both test and full-scale furnaces. In this method model parameters of the coal processes are extracted and validated. This paper presents the importance of the validation of the model parameters which are used in CFD codes. Our results show very good fit of CFD simulations with various parameters measured in a test furnace and several types of utility boilers. The results of this study demonstrate the viability of the present methodology as an effective tool for optimization coal burning in full-scale utility boilers.
机译:这项研究的目的是开发一种工程工具,通过该工具可以预测燃煤电站锅炉中煤的燃烧行为。我们在本文中提出,只要适当选择和验证模拟所需的模型参数,计算流体动力学(CFD)代码就可以成功预测各种类型的粉煤电站锅炉的性能和排放。为此,我们开发了一种方法,该方法将50 kW中试规模的测试设施中的测量与CFD模拟相结合,并使用为测试炉和全尺寸炉配置的相同CFD代码。在这种方法中,煤工艺的模型参数被提取和验证。本文介绍了验证CFD代码中使用的模型参数的重要性。我们的结果表明,CFD模拟非常适合在测试炉和几种类型的公用锅炉中测量的各种参数。这项研究的结果证明了本方法作为在大型公用事业锅炉中优化燃煤的有效工具的可行性。

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