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Dynamic Behaviors of Condensing Clusters Based on Rayleigh Scattering Experiment

机译:基于瑞利散射实验的凝聚团簇动态行为

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摘要

Condensation is a common physical process which widely exists in natural phenomena and thermal energy systems. In a condensation process, cluster is considered as the important bridge between vapor body and condensates. However, limited by the minimum imaging dimension of traditional measurements, early experimental studies about initial stages of condensation process are not sufficient. This paper provides a powerful optical platform for the study of dynamic clusters process. Based on the Rayleigh law, optical experiments were firstly introduced to investigate the clusters spatial distribution close to and far from condensation surface. The results show that clusters are mainly generated in the vicinity of the condensation surface within the thickness of 200 μm. When they move away from the condensation surface, clusters progressively vanish and they have a life cycle of a fraction of a millisecond. Though scattering intensity is proportional to the 6th power of cluster radius r and cluster number density N c theoretically, the scattering intensity does not increase sharply with the increase of subcooling degree from the experimental results, so we can infer that the cluster number density plays a dominate role in this process and the effect of cluster radius almost can be ignored.Zhong Lan and Di Wang contributed equally to this work.
机译:冷凝是一种普遍的物理过程,广泛存在于自然现象和热能系统中。在冷凝过程中,团簇被认为是蒸气体与冷凝物之间的重要桥梁。然而,受传统测量的最小成像尺寸的限制,有关冷凝过程初始阶段的早期实验研究还不够。本文为动态聚类过程的研究提供了一个强大的光学平台。根据瑞利定律,首先引入光学实验来研究团簇在凝结面附近和远离凝结面的空间分布。结果表明,团簇主要产生在凝结面附近,厚度为200μm。当它们离开冷凝表面时,簇逐渐消失,它们的生命周期只有几分之一毫秒。尽管理论上散射强度与簇半径r和簇数密度N c的六次方成正比,但是从实验结果来看,散射强度不会随着过冷度的增加而急剧增加,因此我们可以推断出簇数密度起着在这一过程中起着主导作用,簇半径的影响几乎可以忽略。钟兰和狄旺对这项工作的贡献同等。

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