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Computational fluid dynamic modelling of a 550 MW tangentially-fired furnace under different operating conditions

机译:不同运行条件下550 MW切向炉的计算流体动力学建模

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In the present paper, a computational fluid dynamics (CFD) modelling study was performed for the combustion of the brown coal in a large-scale tangentially-fired furnace (550 MW) under different operating conditions. The AVL Fire CFD code has been used to model the furnace. The mathematical models of coal combustion with the appropriate kinetic parameters were written and added to the code as user defined functions. It consists of pulverised coal (PC) devolatilization, char burnout, heat and mass transfer, and nitric oxide formation. The simulation of the PC combustion was carried out using multi-step reaction chemistry schemes. The level of confidence of this numerical model was based on the previous validations of the lignite combustion in a lab-scale furnace, as well as the validation parameters of the present furnace at the standard existing conditions in terms of temperature values and species concentrations. Performance of the boiler under different operating conditions was investigated, from which the effects of air and coal mass flow rates were considered at full load with different operating schemes of coal mills (out-of-service operations). The validated model was used to perform the following investigation parameters: furnace gas temperatures, species concentrations (CO and CO2), and velocity distributions. This study provides good information to optimize the operations of the utility tangentially-fired boiler with less emissions production.
机译:在本文中,在不同的操作条件下对棕色煤(550mW)的棕煤燃烧进行计算流体动力学(CFD)建模研究。 AVL Fire CFD代码已用于模拟炉子。用适当的动力学参数写入煤炭燃烧的数学模型,并将代码添加到代码中作为用户定义的函数。它包括粉煤(PC)脱挥发,Char Burnout,热量和传质和一氧化氮形成。使用多步反应化学方案进行PC燃烧的模拟。该数值模型的置信水平是基于实验室型炉中褐煤燃烧的先前验证,以及在温度值和物种浓度方面的标准现有条件下本炉的验证参数。研究了锅炉在不同的操作条件下的性能,通过煤磨机(不惯用运营)的不同操作方案来考虑空气和煤质量流量的效果。验证的模型用于执行以下研究参数:炉气温,物种浓度(CO和CO2)和速度分布。本研究提供了良好的信息,以优化实用性切向锅炉的运营,减少排放量较少。

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