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Application of masked two-dimensional Fourier spectra for improving the accuracy of STIV-based river surface flow velocity measurements

机译:掩蔽二维傅立叶谱应用提高基于STIV的河流表面流速测量精度的应用

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摘要

Space-time image velocimetry (STIV) is a well-established image-based technique for measuring river surface flow from videos or image time series. Because the fundamental measurement mechanism is relatively simple, STIV has been used widely in research and for practical purposes in Japan and other countries. The advantage of STIV over other imaging techniques such as large-scale particle image velocimetry (LSPIV) is its robustness. More specifically, the streamwise velocity component can be efficiently estimated by simply measuring the slope appearing in a space-time image (STI) that represents the advection of surface textures. However, in the course of practical applications cases occur in which STIV yields erroneous results when the measurement conditions at the river site are not satisfactory for accurate measurements, such as when the water surface includes textures other than those directly related to turbulent advection. In this research, surface textures are classified into ten types and image filters based on wavenumber-frequency spectra are developed to improve the quality of the STI so that the texture contains only those features that represents the advection of surface turbulence. The quality of the STI can be improved with the filters and thus further increase the robustness of the measurement technique.
机译:时空图像VELOCIMETRY(STIV)是一种熟悉的基于图像的技术,用于测量来自视频或图像时间序列的河流表面流量。由于基本测量机制相对简单,因此STIV已广泛用于研究和日本和其他国家的实际目的。 STIV在其他成像技术(如大规模粒子图像VELOCIMETRY(LSPIV))上的优点是其鲁棒性。更具体地,通过简单地测量出现在表现出表面纹理的平整的时效图像(STI)中出现的斜率,可以有效地估计流速度分量。然而,在实际应用过程中,当河流现场的测量条件不令人满意以准确测量时,STIV产生错误的结果,例如当水表面包括与湍流平流直接相关的纹理时。在本研究中,表面纹理被分类为基于波数频谱的10种类型和图像滤波器,以提高STI的质量,使得纹理仅包含代表表面湍流的平整的那些特征。可以用滤波器改善STI的质量,从而进一步提高了测量技术的鲁棒性。

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