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Experimental studies on dynamics of methane-air premixed flame in meso-scale diverging channels

机译:中尺度发散通道中甲烷-空气预混火焰动力学的实验研究

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The propagation characteristics of a laminar premixed flame front in meso-scale straight and diverging channels of 5°, 10° and 15° with inlet dimension of 25 mm x 2 mm are reported in this paper. The downstream part of the channels was heated with an external heat source, to maintain a positive wall temperature gradient along the direction of fluid flow. These investigations show that planar flames are observed near flash back limits. Negatively stretched flames were observed for moderate flow rates and rich mixtures and for high flow rates, flames were positively stretched. These flames were either symmetric or asymmetric in nature. Partially stable flames were observed at high velocities for rich mixtures, whereas for lean mixture partially stable flames were observed for all flow rates. All the divergent channels showed an improvement in high velocity limits compared with the straight channel for the same mixture. Planar flames observed in the experiments helped in determining the laminar burning velocities for these mixtures at different preheat temperatures. A co-relation of laminar burning velocity with mixture preheat temperature is also obtained for a stoichiometric methane-air mixture. This co-relation S_u/S_u,o = (T_u/T_u,o)~(1.558) is in good agreement with the earlier co-relations.
机译:本文报道了层状预混合火焰锋在入口尺寸为25 mm x 2 mm的5°,10°和15°中尺度直通道和发散通道中的传播特性。通道的下游部分由外部热源加热,以沿流体流动方向维持正的壁温梯度。这些研究表明,在回火极限附近观察到了平面火焰。对于中等流速和丰富的混合物,观察到负向拉伸的火焰,对于高流速,观察到正向拉伸的火焰。这些火焰本质上是对称的或不对称的。对于富混合物,在高速下观察到部分稳定的火焰,而对于稀薄混合物,在所有流速下都观察到部分稳定的火焰。与相同混合物的直通道相比,所有发散通道均显示出较高的速度极限。在实验中观察到的平面火焰有助于确定这些混合物在不同预热温度下的层流燃烧速度。对于化学计量的甲烷-空气混合物,还获得了层流燃烧速度与混合物预热温度的相互关系。此关系S_u / S_u,o =(T_u / T_u,o)〜(1.558)与先前的关系密切相关。

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