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Experimental study on flame pattern formation and combustion completeness in a radial microchannel

机译:径向微通道火焰纹形成和燃烧完成度的实验研究

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Combustion behavior in a radial microchannel with a gap of 2.0 mm and a diameter of 50 mm was experimentally investigated. In order to simulate the heat recirculation, which is an essential strategy in microscale combustion devices, positive temperature gradients along the radial flow direction were given to the microchannel by an external heat source. A methane-air mixture was supplied from the center of the top plate through a 4.0 mm diameter delivery tube. A variety of flame patterns, including a stable circular flame and several unstable flame patterns termed unstable circular flame, single and double pelton-like flames, traveling flame and triple flame, were observed in the experiments. The regime diagram of all these flame patterns is presented in this paper. Some characteristics of the various flame patterns, such as the radii of stable and unstable circular flames, major combustion products and combustion efficiencies of all these flame patterns, were also investigated. Furthermore, the effect of the heat recirculation on combustion stability was studied by changing the wall temperature levels.
机译:实验研究了在间隙为2.0 mm,直径为50 mm的径向微通道中的燃烧行为。为了模拟热循环,这是微型燃烧设备中必不可少的策略,外部热源将沿径向流动方向的正温度梯度提供给了微通道。从顶板的中心通过直径为4.0 mm的输送管供应甲烷-空气混合物。在实验中观察到了多种火焰模式,包括稳定的圆形火焰和几种不稳定的火焰模式,称为不稳定的圆形火焰,单和双pelton型火焰,行进火焰和三重火焰。本文介绍了所有这些火焰模式的状态图。还研究了各种火焰模式的一些特征,例如稳定和不稳定的圆形火焰的半径,所有这些火焰模式的主要燃烧产物和燃烧效率。此外,通过改变壁温水平研究了热循环对燃烧稳定性的影响。

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