首页> 外文会议>Micro/Nanoscale Heat Transfer International Conference 2008 >EXPERIMENTAL STUDY ON THE DIFFUSION FLAME USING LIQUID ETHANOL ASFUEL IN MINI-SCALE
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EXPERIMENTAL STUDY ON THE DIFFUSION FLAME USING LIQUID ETHANOL ASFUEL IN MINI-SCALE

机译:小型乙醇中乙醇溶液扩散火焰的实验研究

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At Present, the study of mini-scale motor is a very hot topic. The diffusion flame of liquid fuel in mini-scale is influenced by many factors, which should be studied further. In present experiments, three ceramic tubes were used as burners. The inner diameters of these ceramic tubes are 1.0mm, 0.6mm, and 0.4mm respectively. The combustion flame of liquid ethanol was visualized by high-accuracy camera, and the temperature field of the flame was measured by IR camera. And the effect of buoyancy on the flame was analyzed qualitatively. The measured images of the flame show that the whole flame is composed of gas area, diffusion area and reaction area. Experimental results show that there is a linear relationship between the flame height and the flow rate of liquid ethanol. The flame non-dimensional height is nearly directly proportional to Reynolds number. The critical non-dimensional flame heights are nearly the same when quench extinguishing appears for different burners with different inner diameters. Buoyancy causes flame elongated in the direction of height.
机译:目前,微型电动机的研究是一个非常热门的话题。小型液体燃料的扩散火焰受多种因素影响,有待进一步研究。在本实验中,使用了三个陶瓷管作为燃烧器。这些陶瓷管的内径分别为1.0mm,0.6mm和0.4mm。用高精度照相机观察液体乙醇的燃烧火焰,并用红外照相机测量火焰的温度场。并定性分析了浮力对火焰的影响。火焰的实测图像表明,整个火焰由气体面积,扩散面积和反应面积组成。实验结果表明,火焰高度与液体乙醇的流量呈线性关系。火焰的无量纲高度几乎与雷诺数成正比。当不同内径的不同燃烧器出现淬火熄灭时,临界的无量纲火焰高度几乎相同。浮力导致火焰沿高度方向拉长。

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