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Experimental investigation on flow structures and mixing mechanisms of a gas-solid burner jet

机译:气固燃烧器射流流动结构和混合机理的实验研究

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The objective of this study was to investigate the flow structures and mixing mechanisms of a gas-solid two-phase jet from a burner employed in the utility boiler. Laboratory experiments were conducted in a 0.15 m internal diameter test facility. Gas-solid jet flow downstream of the burner exit was measured by a fiber optic probe. Local solid concentration and particle size distribution were obtained using the probe that was traversed over the cross-section of the jet. The effects of the side flow on the primary air gas-solid flow characteristics were also studied. The measurements showed the availability of fiber optic probe to investigate the gas-solid jet flow downstream the industrial burner nozzle with high solid concentration. Obvious slip between the gas phase and the solid phase in the gas-solid jet flow was found in the experiments. The side flow disturbed the solid concentration distribution in the jet, a more smooth solid concentration profile across the jet can be achieved after the side flow was introduced. The particle size distributions in the jet were similar with the distributions of the solid concentration, the particles with large diameters always appeared in the zones where the solid concentrations were high.
机译:这项研究的目的是研究来自多用途锅炉燃烧器的气固两相射流的流动结构和混合机理。实验室实验是在0.15 m内径的测试设备中进行的。通过光纤探头测量燃烧器出口下游的气固射流。使用横穿喷嘴横截面的探针获得局部固体浓度和粒度分布。还研究了侧流对一次空气气固流动特性的影响。测量结果表明,光纤探头可用于研究工业燃烧器喷嘴下游具有高固体浓度的气固射流。实验发现,气固两相流中气相和固相之间存在明显的滑移。侧流扰动了射流中的固体浓度分布,引入侧流后,可以在整个射流中获得更平滑的固体浓度分布。射流中的粒径分布与固体浓度的分布相似,大直径的颗粒总是出现在固体浓度高的区域中。

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