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A calibrated, non-invasive method for measuring the internal interface height field at high resolution in the rotating, two-layer annulus

机译:一种校准的非侵入性方法,用于在旋转的两层环空中高分辨率测量内部界面高度场

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摘要

We describe a remote sensing method for measuring the internal interface height field in a rotating, two-layer annulus laboratory experiment. The method is non-invasive, avoiding the possibility of an interaction between the flow and the measurement device. The height fields retrieved are accurate and highly resolved in both space and time. The technique is based on a flow visualization method developed by previous workers, and relies upon the optical rotation properties of the working liquids. The previous methods returned only qualitative interface maps, however. In the present study, a technique is developed for deriving quantitative maps by calibrating height against the colour fields registered by a camera which views the flow from above. We use a layer-wise torque balance analysis to determine the equilibrium interface height field analytically, in order to derive the calibration curves. With the current system, viewing an annulus of outer radius 125 mm and depth 250 mm from a distance of 2 m, the inferred height fields have horizontal, vertical and temporal resolutions of up to 0.2 mm, 1 min and 0.04 s, respectively.
机译:我们描述了一种在旋转的两层环空实验室实验中测量内部界面高度场的遥感方法。该方法是非侵入性的,避免了流量与测量装置之间相互作用的可能性。检索到的高度字段是准确的,并且在时间和空间上都得到高度解析。该技术基于先前工作人员开发的流动可视化方法,并且依赖于工作液体的旋光特性。但是,先前的方法仅返回定性接口映射。在本研究中,开发了一种技术,该技术用于通过相对于从上方查看流量的相机记录的色域校准高度来导出定量图。我们使用逐层扭矩平衡分析来解析地确定平衡界面高度场,以便得出校准曲线。在当前系统中,从2 m的距离观察外半径为125 mm的环面和深度为250 mm的环面,推断出的高度场的水平,垂直和时间分辨率分别高达0.2 mm,1 min和0.04 s。

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