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Surface ignition behaviors of methane-air mixture in a gas oven burner

机译:燃气烤箱燃烧器中甲烷-空气混合物的表面着火行为

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In a gas oven burner, commonly used as a residential appliance, a surface igniter is a critical component for creating a pilot flame near the surface that can propagate safely back to the nozzle of the burner. The igniter should meet critical operating requirements: a lower surface temperature needed to ignite a methane-air mixture and a stable/safe ignition sustained. Otherwise, such failure would result in an instantaneous peak in carbon monoxide emission and a safety hazard inside a closed oven. Several theoretical correlations have been used to predict ignition temperature as well as the critical ignition/extinction limit for a stagnation flow ignition. However, there have only been a few studies on ignition modes or relevant stability analysis, and therefore a more detailed examination of the transient ignition process is required. In this study, a high-speed flame visualization technique with temperature measurement was employed to reveal a surface ignition phenomenon and subsequent flame propagation of a cold combustible methane-air mixture in a gas oven burner. The operating parameters were the temperature-time history of the igniter surface, mixture velocity, and the distance of the igniter from the nozzle. The surface ignition temperatures were analyzed for such parameters under a safe ignition mode, while several abnormal modes leading to ignition failure were also recognized.
机译:在通常用作家用器具的燃气烤箱燃烧器中,表面点火器是在表面附近产生引燃火焰的关键部件,该引燃火焰可以安全地传播回到燃烧器的喷嘴。点火器应满足关键的运行要求:点燃甲烷-空气混合物所需的较低表面温度以及持续稳定/安全的点火。否则,这种故障将导致一氧化碳的瞬时峰值释放,并在密闭的烤箱内造成安全隐患。几种理论相关性已用于预测点火温度以及停滞流点火的临界点火/熄火极限。但是,仅对点火方式或相关的稳定性分析进行了少量研究,因此需要对瞬态点火过程进行更详细的检查。在这项研究中,采用带有温度测量的高速火焰可视化技术来揭示表面点火现象以及随后在燃气烤箱燃烧器中冷可燃气体-空气混合物的火焰传播。操作参数是点火器表面的温度-时间历史,混合气速度以及点火器与喷嘴的距离。在安全点火模式下分析了表面点火温度下的此类参数,同时还发现了导致点火失败的几种异常模式。

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