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CARBON BURNOUT OF PULVERIZED COAL IN POWER STATION FURNACES

机译:电站锅炉煤粉的碳爆破。

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The degree of carbon burnout in pulverized fuel-fired power stations is important because it is linked with power plant efficiency and coal ash suitability for construction purposes. The use of computational methods to calculate carbon burnout in such systems has been aided by the increasing availability of fast computers and improvements in computational methodologies. Despite recent advances in fluid flow, coal devolatilization, and coal combustion models, the use of CFD methods for detailed design purposes or for the selection of commercial coals is still limited. In parallel, industrial engineering codes, which combine simplified thermal models with advanced coal combustion models, are still undergoing development since they provide economic advantages over detailed CFD analysis. Although the major coal combustion processes are well established, an understanding regarding the role of coal macerals and the influence of ash on the combustion process is still lacking. A successful coal model must be able to handle all the complexities of combustion, from the details of the burner geometry through the formation of unburned carbon as well as NO_x. The development of such a model is described here.
机译:煤粉燃料电站的碳燃尽程度很重要,因为它与电厂效率和粉煤灰对建筑用途的适应性有关。快速计算机的可用性不断提高以及计算方法的改进,有助于在此类系统中使用计算方法计算碳燃尽。尽管最近在流体流动,煤脱挥发分和煤燃烧模型方面取得了进步,但用于详细设计目的或选择商品煤的CFD方法的使用仍然受到限制。同时,将简化的热模型与先进的煤燃烧模型相结合的工业工程规范仍在开发中,因为它们比详细的CFD分析具有经济优势。尽管主要的煤燃烧过程已经很好地建立起来,但是仍然缺乏对煤的化学成分的作用以及灰分对燃烧过程的影响的理解。成功的煤炭模型必须能够处理所有燃烧的复杂性,从燃烧器几何形状的细节到未燃烧碳以及NO_x的形成。这里描述了这种模型的开发。

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