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Numerical Analysis of Loads Effect on Combustion Performance and NOx Emissions of a 220 MW Pulverized Coal Boiler

机译:220 MW煤粉锅炉燃烧性能和NOx排放量的数值分析

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This paper presents numerical study on the combustion performance and NOx emissions of a 220 MW pulverized coal boiler. Three different loads have been simulated with combusting coal,200MW,170MW and 140MW respectively.In order to get as precise as possible numerical analysis results, two-step simulation method has been adopted in this work,namely,air supply system simulation and furnace simulation.After air supply system simulation, the results have been taken as the initial and boundary conditions for furnace simulation. The comparison between the measured values and predicted results from 200MW case shows much better agreement.According to the simulation results, the adopted two-step simulation method is reasonable and suitable for predicting the characters of the flow and combustion process.It is concluded that the distributions of temperature,O2 and CO concentration inside furnace with different loads shows good similarly. The total NOx emissions decreased with the boiler load reducing,and fuel NOx has the same trend as total NOx,and fuel NOx account for about 66% in total NOx in all the three cases.More important, thermal NOx slowly decreased with the rise of boiler load.More detailed results presented in this paper enhance the understanding of combustion processes and complex flow patterns of Front-Wall pulverized coal boilers.
机译:本文呈现在220兆瓦的燃烧性能和NOx排放数值研究煤粉锅炉。三种不同的负载进行了模拟与燃烧煤,200MW,170MW和140MW respectively.In为了获得尽可能精确的数值分析结果,两步仿真方法已在这项工作中采用的,即,送风系统仿真和模拟炉。经过空气供给系统的模拟,结果已被取作炉模拟的初始条件和边界条件。从200MW的情况下示出的测定值和预测的结果好得多agreement.According模拟结果之间的比较,所采用的两步模拟方法是合理的,适合于预测的流动和燃烧process.It的字符推断出温度,O2和CO浓度炉内分布的不同强度显示出良好的类似。总NOx排放与锅炉负荷降低降低,并且燃料型NOx具有相同的趋势总NOx和燃料型NOx占约66%总的NO x在所有三个cases.More重要,热NOx缓慢的升高而降低本文提出的锅炉load.More详细结果提高燃烧过程和前壁的复杂的流动模式的理解煤粉锅炉。

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