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Effect of Surface Catalytic Reaction on Homogeneous Premixed combustion

机译:表面催化反应对均相预混燃烧的影响

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Surface catalytic reaction is an important way to organize effective and stable combustion inside micro or mini-scale combustor. In this paper, the surface catalytic kinetics theory was used to study the effect of Pt-surface catalytic reaction on homogeneous lean fuel premixed combustion of CH{sub}4/Air in a 2-D mini-scale expanding channel. Using the CHEMKIN surface catalytic kinetics model, a numerical method was presented, which is based on the commercial code, FLUENT. The performance of our numerical procedure was validated by comparison of the results with those obtained from DETCHEM (Redenius, 2001) and the experimental data. Our studies found, compared with homogeneous combustion, the catalytic reaction produces a reduced extinction distance, a thicker flame, and a lower maximum temperature inside the flow field. Worthwhile, the temperature gradient on the unburned side of the flame is decreased. The effects of the surface catalytic reaction on the gas phase combustion are very sensitive to the equivalence ratio. The leaner the mixture is, the stronger the catalytic effects are.
机译:表面催化反应是在微型或迷你型燃烧器内组织有效和稳定燃烧的重要途径。本文,表面催化动力学理论用于研究Pt-Surface催化反应对2-D小尺度膨胀通道中CH {Sub} 4 /空气均匀贫燃料预混燃烧的影响。使用Chemkin表面催化动力学模型,提出了一种基于商业代码,流畅的数值方法。通过将结果与从Detchem(红莲,2001)和实验数据获得的结果进行比较,验证了我们数值程序的性能。我们的研究与均匀燃烧相比,催化反应产生了降低的消光距离,较厚的火焰和流场内的最大温度。值得的是,火焰的未燃道侧的温度梯度降低。表面催化反应对气相燃烧的影响对等效比非常敏感。混合物的柔软是,催化作用越强。

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