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Effects of H2 and CO2 addition on the heat transfer characteristics of laminar premixed biogas–hydrogen bunsen flame

机译:氢气和二氧化碳的添加对层流预混合沼气-氢气本生火焰传热特性的影响

摘要

The effects of H2 and CO2 on the heat transfer characteristics of the laminar premixed biogas–hydrogen flame were investigated quantitatively. The equivalence ratio was kept to 1.2 so as to obtain the stable flames, and the heat fluxes and flame temperatures of laminar biogas jet flames with different H2 (10–50%) and CO2 (25–50%) volumetric fractions were measured experimentally, and that of the methane and LPG flames were also measured for the comparison purpose. In addition, the total heat transfer rates were calculated based on the experimental data. The results show that the total heat transfer rate of impinging biogas flames can be improved evidently with the hydrogen enrichment, and the optimum hydrogen enrichment is recommended to be αH2 = 0.3 based on this study. With this hydrogen enrichment, the total heat transfer rate can be enhanced by about 20–30% at all tested heating distances. The higher flame temperature and stronger diffusivity caused by H2 addition can lead to the larger temperature gradient and more heating area with the high temperature, respectively, which are the major reasons of its promotion effects. Besides, with the same hydrogen enrichment, the BG75 flame with the less energy input has a better heating performance than the methane flame, while the BG50 flame has the minimum total heat transfer rate. CO2 exerts its influences on the heat transfer characteristics through suppressing the reaction OH + CO = CO2 + H to weaken the combustion and lowering the flame temperature by its larger specific heat capacity and the reduced proportion of the combustible component. However, the larger specific heat capacity of CO2 can also lead to the moderate reduction of flame temperature in the wall jet region, which results in the better heating performance of the BG75 flame.
机译:定量研究了氢气和二氧化碳对层流预混合沼气-氢气火焰传热特性的影响。保持当量比为1.2,以获得稳定的火焰,并通过实验测量了H2(10–50%)和CO2(25–50%)体积分数不同的层状沼气喷射火焰的热通量和火焰温度,为了进行比较,还测量了甲烷和LPG火焰的火焰。另外,基于实验数据计算总传热率。结果表明,通过富氢可以明显改善撞击沼气火焰的总传热速率,根据该研究,最佳氢富集建议为αH2= 0.3。通过这种富氢,在所有测试的加热距离下,总传热率可以提高约20–30%。 H2的添加导致较高的火焰温度和较强的扩散性可分别导致较大的温度梯度和较高的加热面积,这是其促进作用的主要原因。此外,在氢气富集相同的情况下,能量输入较少的BG75火焰具有比甲烷火焰更好的加热性能,而BG50火焰具有最低的总传热率。 CO2通过抑制OH + CO = CO2 + H的反应来影响传热特性,以减弱燃烧并降低火焰温度,这是因为其较大的比热容和可燃成分的比例降低了。但是,较大的CO2比热容也会导致壁射流区域的火焰温度适度降低,从而导致BG75火焰具有更好的加热性能。

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