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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Multifractality of drop breakup in the air-blast nozzle atomization process - art. no. 016302
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Multifractality of drop breakup in the air-blast nozzle atomization process - art. no. 016302

机译:鼓风喷嘴雾化过程中液滴破碎的多重性-艺术没有。 016302

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摘要

The multifractal nature of drop breakup in the air-blast nozzle atomization process has been studied. We apply the multiplier method to extract the negative and the positive parts of the f(alpha) curve with the data of drop-size distribution measured using dual particle dynamic analyzer. A random multifractal model with the multiplier triangularly distributed is proposed to characterize the breakup of drops. The agreement of the left part of the multifractal spectra between the experimental result and the model is remarkable. The cause of the distinction of the right part of the f(alpha) curve is argued. The fact that negative dimensions arise in the current system means that the spatial distribution of the drops yielded by the high-speed jet fluctuates from sample to sample. In other words, the spatial concentration distribution of the disperse phase in the spray zone fluctuates momentarily, showing intrinsic randomness. [References: 29]
机译:已经研究了在喷气喷嘴雾化过程中液滴破裂的多重分形性质。我们应用乘数法提取f(alpha)曲线的负部分和正部分,以及使用双粒子动态分析仪测量的液滴尺寸分布数据。提出了具有三角形分布的乘数的随机多分形模型来表征液滴的破裂。实验结果与模型之间的多重分形谱图的左侧部分具有明显的一致性。提出了区分f(alpha)曲线右侧部分的原因。当前系统中出现负尺寸的事实意味着,高速射流产生的液滴的空间分布会在样品之间波动。换句话说,在喷雾区域中分散相的空间浓度分布瞬时波动,表现出固有的随机性。 [参考:29]

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