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Computational Analysis of Gas Phase Mixing in a Co-Fired Burner with Two Different Designs

机译:两种不同设计的共燃燃烧器中气相混合的计算分析

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The study of swirling jet combustor for biomass coal co-firing is of great interest for energy industry. The biomass co-firing can serve as a NOx reduction method as well as the better use of renewable energy source. Large eddy simulation (LES) and RANS modelling have been performed with two different burner designs. Usually pulverized coal-biomass mixture enters the furnace along with primary air through primary pipe, and the secondary pipe provides necessary air and mixing for combustion. The improved model has three passages including primary, secondary and middle passage for swirling. The simulations on two geometries have been compared, and the aim is to design a better and improved burner model for better pre-combustion mixing in the biomass co- fired furnace. The results from two-way and three-way geometry have been compared with each other as well as with the results from the furnace model used by Apte and Mahesh [8].
机译:旋转射流燃烧器用于生物质煤共烧的研究对能源工业具有重要意义。生物质共烧可以作为减少NOx的方法,也可以更好地利用可再生能源。大型涡流仿真(LES)和RANS建模已使用两种不同的燃烧器设计进行。通常,煤粉和生物质的粉状混合物与初级空气一起通过一级管道进入炉内,二级管道为燃烧提供必要的空气和混合气体。改进的模型具有三个通道,包括用于涡旋的一次,二次和中间通道。比较了两种几何结构的模拟,目的是设计一个更好的改进的燃烧器模型,以便在生物质共烧炉中更好地进行预燃烧混合。两向和三向几何结构的结果以及Apte和M​​ahesh [8]所用炉模型的结果已进行了比较。

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