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Measurements and numerical simulations for optimization of the combustion process in a utility boiler

机译:用于优化电站锅炉燃烧过程的测量和数值模拟

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A three-dimensional computational fluid dynamics code was used to analyse the performance of 550 MW pulverized coal combustion opposite a wall-fired boiler (of IEC) at different operation modes. The main objective of this study was to prove that connecting plant measurements with three-dimensional furnace modelling is a cost-effective method for design, optimization and problem solving in power plant operation. Heat flux results from calculations were compared with measurements in the boiler and showed good agreement. Consequently, the code was used to study hydrodynamic aspects of air-flue gases mixing in the upper part of the boiler. It was demonstrated that effective mixing between flue gases and overfire air is of essential importance for CO reburning. From our complementary experimental-numerical effort, IEC considers a possibility to improve the boiler performance by replacing the existing OFA nozzles by those with higher penetration depth of the air jets, with the aim to ensure proper mixing to achieve better CO reburning.
机译:使用三维计算流体动力学代码来分析550 MW壁煤锅炉(IEC)在不同操作模式下的粉煤燃烧性能。这项研究的主要目的是证明将电厂测量与三维炉模型联系起来是一种经济有效的方法,可用于电厂运行中的设计,优化和问题解决。计算得出的热通量与锅炉中的测量结果进行了比较,显示出良好的一致性。因此,该代码用于研究锅炉上部中的烟气混合的流体力学方面。事实证明,烟气与过火空气之间的有效混合对于CO再燃至关重要。通过我们在实验上的补充努力,IEC认为有可能通过用喷气深度更大的喷嘴替换现有的OFA喷嘴来改善锅炉性能,以确保适当的混合以实现更好的CO再燃。

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