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FILTRATION COMBUSTION OF METHANE IN HIGH-POROSITY MICRO-FIBROUS MEDIA

机译:高孔隙率微纤维介质中甲烷的过滤燃烧

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Filtration combustion of lean methane-air mixtures in inert, high-porosity micro-fibrous media was studied experimentally in quartz tubes with different diameters. First, an overall stability diagram was obtained. Between the upstream and downstream propagating regimes, a specific rigid standing wave regime was observed, whereas only one standing wave point existed in other ordinary porous media. A specific instability phenomenon of a combustion wave splitting into two or more parts during wave propagation downstream was also observed in smaller diameter tubes at high filtration velocities. In principle, the results of a conventional two-temperature 1D analytical model captured the main feature of the process obtained in the experiment, hut failed to explain the process of flame anchoring to the porous carcass that was observed under variation of the mass flow rate. The possible causes of the failure of the conventional modeling approach were presented.
机译:在不同直径的石英管中,通过实验研究了贫甲烷气混合物在惰性,高孔隙率微纤维介质中的过滤燃烧。首先,获得总体稳定性图。在上游和下游的传播方式之间,观察到一种特定的刚性驻波方式,而在其他普通多孔介质中仅存在一个驻波点。在较高的过滤速度下,在较小直径的管道中还观察到燃烧波在向下游传播时分裂成两个或多个部分的特定不稳定性现象。原则上,常规的两温一维分析模型的结果反映了实验中获得的过程的主要特征,但未能解释在质量流量变化下观察到的火焰锚定到多孔胎体的过程。提出了常规建模方法失败的可能原因。

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