首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Laser diagnostics of pulverized coal combustion in O-2/N-2 and O-2/CO2 conditions: velocity and scalar field measurements
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Laser diagnostics of pulverized coal combustion in O-2/N-2 and O-2/CO2 conditions: velocity and scalar field measurements

机译:O-2 / N-2和O-2 / CO2条件下煤粉燃烧的激光诊断:速度和标量场测量

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摘要

Optical diagnostic techniques are applied to a 21 kW laboratory-scale pulverized coal-methane burner to map the reaction zone during combustion, in mixtures with varying fractions of O-2, N-2 and CO2. Simultaneous Mie scatter and OH planar laser-induced fluorescence (PLIF) measurements have been carried out to study the effect of the oxidizer/diluent concentrations as well as the coal-loading rate. The spatial distribution of soot is captured using laser-induced incandescence (LII). Additionally, velocity profiles at selected axial locations are measured using the pairwise two-dimensional laser Doppler velocimetry technique. The OH PLIF images capture the reaction zones of pilot methane-air flames and the variation of the coal flame structure under various O-2/CO2 compositions. Coal particles devolatilize immediately upon crossing the flame interface, so that the Mie scatter signal almost vanishes. Increasing coal-loading rates leads to higher reaction rates and shorter flames. LII measurements show that soot is formed primarily in the wake of remaining coal particles in the product regions. Finally, differences in the mean and RMS velocity field are explained by the combined action of thermal expansion and the changes in particle diameter between reacting and non-reacting flows.
机译:光学诊断技术应用于21 kW实验室规模的粉状煤甲烷燃烧器,以绘制燃烧过程中反应区的O-2,N-2和CO2含量不同的混合物。同时进行了米氏散射和OH平面激光诱导的荧光(PLIF)测量,以研究氧化剂/稀释剂浓度以及装煤速率的影响。烟尘的空间分布是使用激光诱导白炽灯(LII)捕获的。另外,使用成对的二维激光多普勒测速技术测量选定轴向位置的速度分布。 OH PLIF图像捕获了甲烷甲烷-空气火焰的反应区以及在各种O-2 / CO2组成下煤火焰结构的变化。煤颗粒在穿过火焰界面时立即挥发,因此三重散射信号几乎消失。装煤速率的提高导致更高的反应速率和更短的火焰。 LII测量表明,烟灰主要是在产品区域中残留的煤颗粒之后形成的。最后,通过热膨胀和反应流与非反应流之间粒径变化的综合作用来解释均值和RMS速度场的差异。

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