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Numerical Investigation of Auto-Ignition Characteristics in Microstructured Catalytic Honeycomb Reactor for CH_4-Air and CH_4-H_2-Air Mixtures

机译:CH_4 - 空气和CH_4-H_2 - 空气混合物微结构催化蜂窝反应器中自燃特性的数值研究

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Stable ranges of auto-ignition for the microcombustion of CH4 and CH4-H-2 mixtures are identified numerically in a platinum-coated microcatalytic honeycomb reactor. Steady and transient simulations under pseudo-auto-thermal conditions were performed to investigate the coupling phenomenon between combustion and heat transfer in such microburner using ANSYS 17.2 coupled with a detailed CHEMKIN reaction mechanism. The model was validated utilizing the available data in the literature on a similar microreactor, and the results showed good agreements. A certain amount of heat is furnished from outside at constant temperature from an external electric furnace to investigate the variations of localized self-ignition temperature while changing the flow rate and mixture strength. It was found that the ignition temperature for CH4-air mixtures is not affected by the mass flow rate. However, the ignition temperature of CH4-H-2 air mixtures decreases while increasing the flow rate. The effect of equivalence ratio was studied to demonstrate the variations of flammability limits of the present microreactor. The equivalence ratio required for auto-ignition of CH4-air mixtures was found to be in the range from 0.4 up to 0.85 at a flow rate of 9.5 g/s. The reaction front moved from upstream to downstream under transient conditions matching with the reported experimental behavior in the literature.
机译:CH4和CH 4-H-2混合物的微细燃烧的稳定的自动点火范围在铂涂覆的微催化蜂窝反应器中数值鉴定。进行伪自动热条件下的稳态和瞬态模拟,以研究使用ANSYS 17.2与详细的Chemkin反应机制偶联的这种微大管炉中燃烧和传热之间的耦合现象。该模型在类似的微反应器上利用文献中的可用数据进行了验证,结果表明了良好的协议。从外部电炉的恒定温度从外部提供一定量的热量,以研究局部自燃温度的变化,同时改变流速和混合强度。发现CH4 - 空气混合物的点火温度不受质量流量的影响。然而,CH4-H-2空气混合物的点火温度在增加流速的同时降低。研究了等同率的效果,以证明本微反应器的可燃性局限性的变化。发现CH4 - 空气混合物的自动点火所需的等效比率为0.4至0.85的流速为9.5g / s。与报道文献中报道的实验行为匹配的瞬态条件下的反应前沿从上游移动到下游。

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