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首页> 外文期刊>International Journal of Multiphase Flow >Analysis on the atomization characteristics of aviation biofuel discharging from simplex swirl atomizer
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Analysis on the atomization characteristics of aviation biofuel discharging from simplex swirl atomizer

机译:单纯旋流雾化器排放航空生物燃料的雾化特性分析

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The atomization characteristics of aviation biofuel discharging from a simplex swirl atomizer into quiescent atmospheric air are studied. The aviation biofuel is a mixture of 90% commercially available camelina-derived biofuel and 10% VonSol-53 (aromatics). The experiments are conducted in a spray test facility at varying fuel flow rate conditions. The measured characteristics include atomizer flow number, spray cone angle, breakup length of liquid sheet, wavelength of undulations on liquid sheet, and spray droplet size. The characteristics of biofuel sheet breakup are deduced from the captured images of biofuel spray. The measurements of spray droplet size distribution are obtained using Spraytec. The experimentally measured characteristics of the biofuel sheet breakup are compared with the predictions obtained from the liquid film breakup model proposed by Senecal et al. (1999). The measurements of wavelength and breakup length of the biofuel sheet discharging from the simplex swirl atomizer agree well with the model predictions. The model-predicted droplet size for the biofuel spray is significantly higher than the experimentally measured Sauter mean diameter (SMD). The spray droplets formed from the liquid sheet breakup undergo secondary atomization until 35-45 mm from the atomizer exit and thereafter the SMD increases downstream due to the combined effect of fuel evaporation and droplet coalescence. A good comparison is observed between the experimentally measured SMD of the biofuel spray and the predictions obtained using the empirical correlation reported in literature for sprays discharging from simplex swirl atomizers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了从单旋涡流雾化器排放到大气中的航空生物燃料的雾化特性。航空生物燃料是由90%的可商购获得的茶油衍生生物燃料和10%的VonSol-53(芳香族化合物)混合而成。实验是在不同的燃油流量条件下的喷雾测试设备中进行的。测得的特性包括雾化器的流量,喷雾锥角,液体薄片的破裂长度,液体薄片上的起伏波长以及喷雾液滴尺寸。从捕获的生物燃料喷雾图像推导出生物燃料板破裂的特征。喷雾尺寸分布的测量是使用Spraytec获得的。将实验测量的生物燃料板破裂的特性与从Senecal等人提出的液膜破裂模型获得的预测结果进行比较。 (1999)。从单面旋流雾化器排出的生物燃料片的波长和分解长度的测量值与模型预测非常吻合。模型预测的生物燃料喷雾液滴尺寸明显高于实验测量的Sauter平均直径(SMD)。由液膜破裂形成的喷雾液滴进行二次雾化,直到距雾化器出口35-45 mm,然后由于燃料蒸发和液滴聚结的共同作用,SMD向下游增加。在实验测量的生物燃料喷雾的SMD与使用文献报道的经验相关性获得的预测之间进行了很好的比较,该文献报道了从单旋流雾化器排放的喷雾。 (C)2015 Elsevier Ltd.保留所有权利。

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