首页> 外文会议>International Symposium on Air Breathing Engines >FLAME STABILIZATION STUDIES IN A THREE BACKWARD FACING STEP CONFIGURATION BASED MICRO-COMBUSTOR WITH PREMIXED METHANE-AIR MIXTURES
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FLAME STABILIZATION STUDIES IN A THREE BACKWARD FACING STEP CONFIGURATION BASED MICRO-COMBUSTOR WITH PREMIXED METHANE-AIR MIXTURES

机译:具有预混合甲烷 - 空气混合物的三个落叶面对阶梯式微燃烧器中的火焰稳定性研究

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In the present work, experimental investigations on the characterization of flame stabilization behavior in a 2.0 mm base diameter with three backward facing steps and premixed methane-air mixture has been reported. Maximum and minimum diameter in the micro-combustor was kept constant at 2mm and 6mm respectively. Parametric investigations are carried out to understand the effect of change in length of the steps, number of steps, mixture equivalence ratio (Φ) and flow rate on flame stability limit and wall temperature profiles. It was observed that the recirculation zone created due to sudden expansion at the backward step helps in stabilizing the flame within the micro-combustor and enhances the flame stability limits significantly. The increase in the length of the first and second step helps in enhancing the flame stability limits at both lower and higher flow rates. The increase in the length of the third step affects the flame stability limit at higher flow rates only.
机译:在本作工作中,已经报道了在2.0mm基础直径中表征火焰稳定行为的实验研究,其中具有三个向后面对面的步骤和预混合的甲烷 - 空气混合物。微燃烧器中的最大和最小直径分别保持在2mm和6mm的恒定。进行参数研究以了解步骤的长度,步数,混合等效比(φ)和火焰稳定性极限和壁温型材的流速变化的影响。观察到落后步骤突然膨胀所产生的再循环区有助于稳定微燃烧器内的火焰,并显着增强火焰稳定性限制。第一和第二步骤的长度的增加有助于提高较低和较高流速的火焰稳定性限制。第三步的长度的增加仅影响了更高的流速下的火焰稳定性极限。

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