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Feasibility investigation of experimental visualization techniques to study subcooled boiling flow

机译:实验可视化技术研究过冷沸腾流动的可行性研究

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摘要

The purpose of this study is twofold: (1) to explore the feasible implementation of whole-field visualization techniques such as infrared thermometry, particle tracking velocimetry, and high speed shadowgraphy to study subcooled boiling flow through a vertical square channel with a single heated wall and (2) to provide subcooled boiling flow experimental measurements based on the methodology developed in this work. To fulfill the first objective, a series of sensitivity studies and uncertainty analyses was performed, from which recommendations for the proper implementation of these visualization techniques for the study of two-phase flows are given. The purpose of the second objective is to provide reliable information that can be used for the validation of CFD simulations and for the improvement and development of turbulence models under subcooled boiling conditions. Unique in the presented experimental results is the whole-field simultaneous measurement of turbulence characteristics for both the liquid and gas phases and for their interactions. These measurements were made under transitional conditions from a single phase flow region to a two phase boiling flow condition. The presented experimental results provide whole-field, multi-scale measurements that can help improve the accuracy of descriptions of the boiling phenomena. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是双重的:(1)探索诸如红外测温,粒子跟踪测速和高速阴影成像等全场可视化技术的可行实施,以研究通过单加热壁的垂直方通道的过冷沸腾流(2)根据这项工作开发的方法,提供过冷沸腾流量实验测量。为了实现第一个目标,进行了一系列敏感性研究和不确定性分析,从中提出了正确实施这些可视化技术以研究两相流的建议。第二个目的是提供可靠的信息,这些信息可用于验证CFD模拟以及在过冷沸腾条件下改进和发展湍流模型。在提出的实验结果中,独特之处在于可以同时测量液相和气相及其相互作用的湍流特性。这些测量是在从单相流动区域到两相沸腾流动条件的过渡条件下进行的。提出的实验结果提供了全场,多尺度的测量结果,可以帮助提高沸腾现象描述的准确性。 (C)2015 Elsevier Ltd.保留所有权利。

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