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Statistical analysis of measured and computed thickness and interfacial temperature of free-falling turbulent liquid films

机译:自由落体湍流液膜的测量和计算厚度及界面温度的统计分析

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摘要

This study examines the evolution of film thickness and interfacial temperature in turbulent, free-falling water films that are subjected to sensible heating. Measured temporal records of film thickness and interfacial temperature are subjected to thorough statistical analysis to understand the influence of interfacial waves on the distribution, periodicity and interdependence of these two parameters. A computational model of the film is constructed and its predictions subjected to similar statistical analysis. The statistical tools employed in this study include probability density, auto-covariance, cross-covariance, auto-spectrum and cross-spectrum. Probability density of film thickness shows an increase in substrate thickness and amplitude with increasing Reynolds number, while auto-covariance of thickness captures dominant frequencies corresponding to the large waves. Cross-covariance of film thickness and interfacial temperature difference captures a clear phase shift between the two parameters, with the temperature reaching a maximum in the relatively thin film region between the substrate and wave peak. Statistical results for both parameters exhibit clear dependence on axial location in the thermal entrance region, and point to fully developed wave structure downstream. The statistical results based on computed film thickness and interfacial temperature difference agree well with the results based on the measured, which demonstrates the effectiveness of the adopted computational tools at predicting the complex transport phenomena associated with wavy liquid-vapor interfaces.
机译:这项研究检查了在受到显着加热的湍流,自由下落的水膜中膜厚度和界面温度的变化。对膜厚和界面温度的测量时间记录进行彻底的统计分析,以了解界面波对这两个参数的分布,周期性和相互依赖性的影响。构造了影片的计算模型,并对其预测进行了类似的统计分析。本研究中使用的统计工具包括概率密度,自协方差,互协方差,自谱和互谱。随着雷诺数的增加,膜厚度的概率密度显示出基底厚度和振幅的增加,而厚度的自协方差捕获了对应于大波的主频。膜厚度和界面温度差的互协方差捕获了两个参数之间的明显相移,温度在基板和波峰之间的相对薄膜区域达到了最大值。这两个参数的统计结果都显示出对热入口区域中轴向位置的明显依赖,并且指向下游充分发育的波浪结构。基于计算的膜厚和界面温度差的统计结果与基于测量的结果非常吻合,这表明所采用的计算工具在预测与波浪状液体-蒸汽界面相关的复杂传输现象方面的有效性。

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