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Measurements of droplets characteristics in a swirl-stabilized spray flame

机译:旋流稳定的喷雾火焰中液滴特性的测量

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Experiments have been performed in a kerosene airblast atomized spray flame where the fuel supply is sandwiched between two coswirling air streams. A phase-Doppler particle sizing system was used to measure fuel droplet size, velocity and turbulent kinetic energy of droplets and gas as well as the fuel volume flux within the combustor for two values of air preheat temperature, 200 degrees C and 400 degrees C. The results reveal that a small liquid fuel exists in the centre of the combustor and due to larger droplets with the swirl effect; the droplets characteristics (velocity and turbulent kinetic energy) did not follow the gas ones. Based upon these measurements, an optimum swirl number will exist with every atomization and burner arrangement of a liquid-fuelled flame associated and will be different from that associated with the corresponding gas-fuelled flame. The investigated atomizer shows a marked influence of the inlet air temperature on the measured droplet size which may be attributed to the design of the internal airflow, promoting prompt atomization at the dominant atomization mode. (c) 2005 Elsevier Inc. All rights reserved.
机译:实验是在煤油喷吹雾化的喷雾火焰中进行的,燃料供应被夹在两个气流中。对于200摄氏度和400摄氏度的两个空气预热值,使用相多普勒粒度测量系统来测量燃料液滴尺寸,液滴和气体的速度和湍流动能以及燃烧室内的燃料体积通量。结果表明,燃烧室中心存在少量液体燃料,这是由于较大的液滴具有旋流效应。液滴的特性(速度和湍动能)不跟随气体。基于这些测量,与液体燃料火焰相关联的每个雾化和燃烧器布置都将存在最佳旋流数,并且该旋流数将与与相应的气体燃料火焰相关联的旋流数不同。所研究的雾化器显示入口空气温度对测得的液滴尺寸有显着影响,这可能归因于内部气流的设计,从而促进了在主要雾化模式下的迅速雾化。 (c)2005 Elsevier Inc.保留所有权利。

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