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Simultaneous measurement of velocity, size and temperature of burning coal particles in swirl-stabilised vitiated air flames

机译:同时测量旋流稳定的空气火焰中燃烧煤颗粒的速度,尺寸和温度

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The velocity, size and volume flux of individual burning and non-burning particles were measured simultaneously in the near-burner region of a natural-gas supported 8 kW swirl burner for swirl number 0.68, using in the secondary stream unheatedair as well as preheated vitiated air as oxidant, with oxygen mole fraction of 0.165 and 0.177, at 400 and 350°C preheat temperatures respectively. An optical instrument based on a combined shadow Doppler velocimeter instrument (for sizing particles ofarbitrary shape) and spatially-precise two-colour pyrometry was developed for the measurements. The results at axial distance z/D=2.6 which lay within the recirculation zone showed that the fraction of burning particles (defined as the ratio of detectedburning particles and the total measured) decreased with increasing radial distance in all flow conditions. The maximum fraction of burning particles decreased as a function of decreasing oxygen mole fraction from about 94% at a 0.21 mole fraction to 28%and 12% at oxygen mole fractions of 0.177 and 0.165 respectively and, as a consequence, the volume flux of burning particles was an order-of-magnitude smaller than the volume flux of the ensemble.
机译:单独燃烧和非燃烧颗粒的速度,尺寸和体积通量同时测量在旋流0.68的天然气支撑的8kW旋转燃烧器的近燃烧器区域中,在二次物流中使用,并预热空气作为氧化剂,氧气摩尔分数为0.165和0.177,分别为400和350℃的预热温度。基于组合的阴影多普勒速度计仪器(用于氮饱和形状的粒度)和空间精确的双色热测定的光学仪器用于测量。在再循环区内的轴向距离z / d = 2.6处的结果表明,随着所有流动条件下的径向距离增加,燃烧颗粒的颗粒(定义为检测到的颗粒的比例和总测量的比率)降低。燃烧颗粒的最大馏分随着在0.21摩尔分数的0.17和0.165的氧摩尔分量下的0.21摩尔分数至28%和12%的氧气摩尔分数下降至28%和12%的函数而降低。结果,燃烧的体积通量粒子是比集合体的体积通量小的数量级。

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