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Intermediate Reynolds/Peclet number, flat plate boundary layer flows over catalytic surfaces for micro-combustion applications

机译:雷诺数/ Peclet数的中间值,平板边界层在催化表面上流动,用于微燃烧

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摘要

The reactive, flat plate boundary layer flow of close-to-stoichiometric, methane-air mixtures over small size Pt plates is studied experimentally for intermediate Reynolds and Peclet numbers which pertain to micro-combustion applications. The surface temperature was measured with infrared thermography and correlated to reactant concentration profiles acquired with line-Raman imaging. Three phases of combustion were observed. Immediately after the leading edge, a first phase was established with a high surface temperature ( > 1200℃) and intense fuel depletion. The Reynolds number and equivalence ratio strongly influenced this first phase. It was followed by a second, longer phase, where temperature reached an intermediate value near 1000℃ that exhibited little sensitivity to Reynolds number and equivalence ratio. In a third phase, combustion was completed and the surface temperature was reduced to the free-stream mixture temperature. It is suggested that this 'Phase I' combustion can be used for burner miniaturisation through boundary layer interruption.
机译:实验研究了在小尺寸Pt板上接近于化学计量的甲烷-空气混合物的反应性平板边界层流动,用于涉及微燃烧应用的中间雷诺数和Peclet数。用红外热成像法测量表面温度,并将其与通过线拉曼成像获得的反应物浓度分布相关联。观察到燃烧的三个阶段。紧接前沿之后,便建立了第一阶段,该阶段的表面温度高(> 1200℃),燃料消耗严重。雷诺数和当量比极大地影响了第一阶段。其次是较长的第二相,温度达到接近1000℃的中间值,对雷诺数和当量比几乎没有敏感性。在第三阶段,燃烧完成并且表面温度降低至自由流混合物温度。建议这种“第一阶段”燃烧可通过边界层中断而用于燃烧器的小型化。

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