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Plasma-Supported Coal Combustion Modeling and Full-Scale Trials

机译:等离子体支持的煤燃烧建模和全规模试验

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Plasma-supported solid fuel combustion is a promising technology for use in thermal power plants (TPPs). Development of this technology comprises two main steps. The first is the execution of a numerical simulation and the second involves full-scale trials of plasma-supported coal combustion through plasma-fuel systems (PFS) mounted on a TPP boiler. For both the numerical simulation and the full-scale trials, the 200 MW boiler at Gusinoozersk TPP (Russia) was selected. The optimization of the combustion of low-rank coals using plasma technology is described, together with the potential of this technology for the general optimization of the coal burning process. Numerical simulation and full-scale trials have enabled technological recommendations for improvement of existing conventional TPP to be made. PFS have been tested for plasma start-up and flame stabilization at 27 TPP boilers in various countries. Steam-productivity of these boilers varied between 75–670 t/h (TPH), with each boiler equipped with different types of pulverized coal burner. During PFS testing, coals of all ranks (brown, bituminous, anthracite and their mixtures) were used, the volatile content of which varied from 4% to 50%; ash – from 15% to 48% and calorific values – from 6,700 to 25,100 kJ/kg. In summary, it is concluded that the developed and industrially tested PFS improve coal combustion efficiency and decrease harmful emission from pulverized coal-fired TPP.
机译:等离子体支撑的固体燃料燃烧是用于热电厂(TPP)的有希望的技术。该技术的发展包括两个主要步骤。首先是执行数值模拟,第二个是通过安装在TPP锅炉上的等离子体 - 燃料系统(PFS)涉及等离子体支持的煤燃烧的全规模试验。对于数值模拟和全规模试验,选择了Gusinoozersk TPP(俄罗斯)的200 MW锅炉。描述了使用等离子体技术的低级煤的燃烧的优化,以及该技术对于煤燃烧过程的一般优化的潜力。数值模拟和全规模试验使能够改善现有的传统TPP的技术建议。在各个国家的27个TPP锅炉中已经测试了PFS的等离子体启动和火焰稳定。这些锅炉的蒸汽生产率在75-670t / h(TPH)之间变化,每个锅炉配备了不同类型的粉煤燃烧器。在PFS测试期间,使用了所有等级(棕色,沥青,无烟煤及其混合物)的煤,其挥发性含量从4%变化至50%;灰 - 从15%到48%,热值 - 从6,700到25,100 kJ / kg。总之,得出结论,发达和工业测试的PFS改善煤燃烧效率,降低粉煤燃煤TPP的有害排放。

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