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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Characterization of luminescent mini-tufts in quantitative flow visualization experiments: Surface flow analysis and modelization
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Characterization of luminescent mini-tufts in quantitative flow visualization experiments: Surface flow analysis and modelization

机译:定量流动可视化实验中发光迷你簇的表征:表面流动分析和建模化

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摘要

As a widely used surface flow visualization method, luminescent mini-tuft has become one challenging topic with its practical advantages in quantitative flow measurement. The luminescent mini-tufts method is preferred with its reduced size and increased luminescence, which is suitable for surface visualization measurement. To provide a standard method/procedure in quantitative analysis for luminescent mini-tuft measurement, the current study established an experimental characterization platform of luminescent mini-tufts method and conducted flat-pate model for flow analysis. The experimental system is consisted of wind tunnel and model section, high-speed image data recording system, digital image processing as well as the control system. The digital imaging processing method for result analysis is also explained, which includes the dark current image extraction, averaging, mini-tufts recognition, and tuft inclination angle/tuft angle estimation process. In this study, the steady flow characterization and quantitative flow analysis is conducted on a flat plate model (Re = 1.6 x 10(5)-6.6 x 10(5)), which is combined with hot-wire anemometry to investigate the basic surface flow topology and boundary layer behaviors. The method is shown capable of capturing both the steady and transient behaviors of a surface flow. Luminescent mini-tufts physical model is also established and found good agreement with the experimental results in this study, which in turn support the mini-tufts characterization and selection in practical applications.
机译:作为一种广泛使用的表面流动可视化方法,发光迷你簇状物已成为一个具有挑战性的主题,具有定量流量测量的实际优点。发光迷你簇绒法优选其尺寸减小和增加的发光,这适用于表面可视化测量。为了提供发光迷你簇测量的定量分析中的标准方法/程序,目前的研究建立了发光迷你簇绒法的实验表征平台,并进行了流动分析的平面展示模型。实验系统由风洞和模型部分组成,高速图像数据记录系统,数字图像处理以及控制系统。还解释了结果分析的数字成像处理方法,包括暗电流图像提取,平均,迷你簇识别和簇倾斜角/簇角估计处理。在该研究中,在平板模型上进行稳定的流动表征和定量流动分析(RE = 1.6×10(5)-6.6×10(5)),其与热线风化术结合以研究基本表面流拓扑和边界层行为。示出了该方法,能够捕获表面流动的稳态和瞬态行为。发光迷你簇绒物理模型也建立并与本研究中的实验结果达成了良好的一致性,这反过来支持实际应用中的迷你簇绒特征和选择。

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