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The influence of coal particle and air jet momenta on MILD combustion in a recuperative furnace

机译:煤颗粒和空气喷射动量对换热炉mILD燃烧的影响

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摘要

The moderate or intense low-oxygen dilution (MILD) combustion regime is a promising technology that operates at high combustion efficiency and lessens pollutant emissions. This numerical study of a parallel jet recuperative MILD combustion furnace investigates the effects of coal particle size and inlet air momentum on furnace dynamics and global CO emissions. It is found that coal particle size affects the coal penetration depth within the furnace and the location of a particle stagnation point. The effects of air inlet momentum are tested in two ways, first by raising the inlet temperature at constant mass flow rate, and second by increasing the mass flow rate at constant temperature. In both cases, increasing the air jet momentum broadens the reaction zone and facilitates MILD combustion, but also increases CO emissions due to lowered reaction rates.
机译:中度或强烈的低氧稀释(MILD)燃烧方案是一种有前途的技术,可在高燃烧效率下运行并减少污染物排放。对平行射流换热器MILD燃烧炉进行的这项数值研究研究了煤粒径和进气动量对炉动态和全球CO排放的影响。已经发现,煤的粒度会影响炉内煤的渗透深度以及颗粒停滞点的位置。进气动量的影响有两种测试方法,一种是通过以恒定质量流量提高进气温度,另一种是通过以恒定温度提高进气流量。在这两种情况下,增加空气喷射动量会扩大反应区域并促进MILD燃烧,但由于降低了反应速率,还会增加CO排放量。

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