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首页> 外文期刊>Fuel Processing Technology >CFD modeling on char surface reaction behavior of pulverized coal MILD-oxy combustion: Effects of oxygen and steam
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CFD modeling on char surface reaction behavior of pulverized coal MILD-oxy combustion: Effects of oxygen and steam

机译:煤粉轻度氧化煤炭表面反应行为的CFD造型:氧气和蒸汽的影响

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Gasification reaction is not supposed to be omitted for pulverized coal MILD-oxy combustion regime, especially for the wet recycle (steam up to 40 vol%). This paper numerically investigates the individual effects of steam and oxygen on pulverized coal MILD-oxy combustion to have better understanding of char reaction behavior under this combustion mode. Results show that, the flame temperature affected by steam is because of thermal radiation, whereas that of O-2 is because of chemical reactivity. The maximum value of the turbulent Damkohler number (Da,(t)) is within 0.25-1.9 for all cases, implying that the rate of chemical reaction is comparable with that of turbulent flow. For 30% O-2 and 40% steam cases, gasification reaction accounts for up to similar to 62%. With a given O-2 level, the reaction of char-H2O competes the active sites with char-O-2 and char-CO2, whereas for a certain level of steam, a positive synergy exists between char-H2O and char-CO2. The effect of CO + H2O -> CO2+ H-2 on generating H-2 becomes increasingly significant when O-2 content is > 21%, and easy to occur under low steam concentration. Increasing the O-2 and steam is conducive for the decrease in overall char burnout rate. As the steam content increases, the reduction on char burnout rate is insignificant for 18% and 21% O-2 cases, but it is serious for 24%-30% O-2 cases.
机译:对于粉煤温和氧气燃烧制度,不应该省略气化反应,特别是对于湿回收(蒸汽高达40体积%)。本文对粉煤轻度氧燃烧进行了数值研究了蒸汽和氧气对煤粉轻度燃烧的各个效果,以便在这种燃烧模式下更好地了解炭反应行为。结果表明,受蒸汽影响的火焰温度是由于热辐射,而O-2的火焰温度是因为化学反应性。对于所有情况,湍流达摩尔号(DA,(T))的最大值在0.25-1.9范围内,暗示化学反应速率与湍流的速率相当。对于30%O-2和40%的蒸汽箱,气化反应占高达62%。对于给定的O-2水平,Char-H2O的反应与Char-O-2和Char-Co2竞争活性位点,而对于一定水平的蒸汽,在Char-H2O和Char-Co2之间存在阳性协同作用。当O-2含量> 21%时,CO + H 2 O - > CO 2 + H-2对产生H-2的影响变得越来越显着,并且在低蒸汽浓度下易发生。增加O-2和蒸汽是有利于整体炭燃烧率的降低。随着蒸汽含量的增加,Char燃烧率的降低率微不足道为18%和21%的O-2案例,但它严重24%-30%O-2案例。

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