螺旋桨三维空化重建的研究与实现

Wuxia Yan
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引用次数: 0

摘要

螺旋桨空化问题会导致螺旋桨性能下降甚至叶片断裂,对螺旋桨空化问题的研究具有重要的现实意义。利用计算机视觉技术进行螺旋桨空化实验一直是船舶研究领域的热点问题。然而,在空化水管实验设备或减压水箱环境中研究螺旋桨的性能存在许多困难。针对这一问题,本文提出了一种非接触式双目立体视觉技术来重建螺旋桨空化。首先,对实验采集的图像进行预处理,分离叶片上的气泡。然后重点对预处理后的图像进行校正。在相机标定获得相机参数的基础上,进行极向校正,获得气泡的三维信息,最终重建气泡的三维图像。实验结果表明,该方法能取得较好的实验效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research and Realization on 3D Propeller Cavitaion Reconstruction
The problem of propeller cavitation can lead to a decrease in performance or even breakage of propeller blades, and the study of propeller cavitation has significant practical significance. The use of computer vision technology for propeller cavitation experiments has always been a hot topic in the field of shipping research. However, there are many difficulties in studying the behavior of propellers in cavitation water tube experimental equipment or pressure reducing water tank environments. In response to this problem, this paper proposes a non-contact binocular stereo vision technology to reconstruct propeller cavitation. Firstly, preprocess the images collected from the experiment and separate the bubbles from blades. Then, the focus is on correcting the preprocessed image. On the basis of obtaining camera parameters based on camera calibration, polar correction is performed to obtain three-dimensional information of the bubbles and ultimately reconstruct the three-dimensional image of the bubbles. The experimental results indicate that this method can achieve good experimental results.
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