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Experimental study on the spray steadiness of an internal-mixing twin-fluid atomizer

机译:内混合双流体雾化器喷雾稳定性的实验研究

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Liquid breakup intensity in the near-nozzle region and droplet size fluctuations at different downstream positions of an internal-mixing twin-fluid (IMTF) atomizer were studied by using a high-speed camera and a Malvern Spraytec diffractometer, and the effect of operating conditions on spray steadiness was analyzed. The results show that under the operating conditions of this study, the primary breakup process of IMTF atomization is affected by various breakup modes, and the characteristic droplet diameters at a given position exhibit different degrees of fluctuation, which can be considered to be inherently unsteady. The primary breakup process at medium gas/liquid mass flow ratio (GLR) is more unsteady than that at either small GLR or large GLR. At different downstream positions, the steadiness of larger droplets is significantly lower than that of smaller droplets. Compared with the near-nozzle region, the spray steadiness is significantly improved in the fully developed region. Moreover, frequency spectrum analysis performed on the time-resolved data of various droplet characteristic diameters in the near-nozzle region shows the presence of a pulsation frequency in the spectrum diagrams. This pulsation frequency can be used for evaluating the influence of GLR on the spray steadiness.(c) 2021 Elsevier Ltd. All rights reserved.
机译:通过使用高速相机和Malvern Playtec衍射仪研究了近喷嘴区域和液滴尺寸的液体分解强度和内部混合双流体(IMTF)雾化器的不同下游位置的波动,以及操作条件的效果分析喷雾稳定性。结果表明,在本研究的操作条件下,IMTF雾化的初级分解过程受各种分离模式的影响,并且给定位置处的特征液滴直径表现出不同程度的波动,这可以被认为是固有的不稳定。中气/液体质量流量比(GLR)的初级分解过程比小GLR或大GLR更不稳定。在不同的下游位置,较大液滴的稳定性显着低于较小液滴的稳定性。与近喷嘴区域相比,在完全发达的区域中,喷射稳定性显着改善。此外,在近喷嘴区域中各种液滴特性直径的时间分辨数据执行的频谱分析显示了光谱图中的脉动频率的存在。这种脉动频率可用于评估GLR对喷雾稳定性的影响。(c)2021 Elsevier Ltd.保留所有权利。

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