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COMPUTATIONAL AND EXPERIMENTAL STUDY OF A TWO-SECTION POROUS BURNER

机译:两部分多孔燃烧器的计算与实验研究

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In this study, experiments and computations were conducted on a two-section porous burner operated on propane/air and methane/air mixtures. The burner consisted of an upstream section of reticulated yttria-stabilized zirconia with 23.6 pores per centimeter (ppc) and a downstream section of 3.9 ppc. Measurements of axial and radial temperatures, pressure drop, and emissions levels were recorded. The predictions from a one-dimensional transient mathematical model with full chemistry were compared to experimental results. Both computations and experiments showed that the stable operating range increases with equivalence ratio. The predicted upper limit agrees well with experiments but the lower limit is somewhat overpredicted. The average temperature in the exhaust stream increases with both inlet velocity and equivalence ratio and is relatively uniform across the burner. Pressure drop is much greater for reacting flows than cold flow and generally increases with inlet velocity. Measured levels of unburned hydrocarbons, oxides of nitrogen, and carbon monoxide are low.
机译:在这项研究中,实验和计算是在丙烷/空气和甲烷/空气混合物的两段式多孔燃烧器上进行的。燃烧器由网状氧化钇稳定的氧化锆的上游部分组成,其每厘米23.6个孔(ppc),下游部分为3.9 ppc。记录轴向和径向温度,压降和排放水平的测量值。将具有完全化学性质的一维瞬态数学模型的预测与实验结果进行了比较。计算和实验均表明,稳定工作范围随当量比的增加而增大。预测的上限与实验非常吻合,但是下限有些过高了。排气流中的平均温度随入口速度和当量比的增加而增加,并且在整个燃烧器中相对均匀。对于反应流,压降要比冷流大得多,并且通常随进口速度而增加。未燃烧的碳氢化合物,氮的氧化物和一氧化碳的含量低。

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