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Characterizing dynamic deformation of marine propeller blades with stroboscopic stereo digital image correlation

机译:用频闪的立体声数字图像相关性表征船用螺旋桨叶片的动态变形

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摘要

Stereo digital image correlation (stereo-DIC) technique shows a powerful capacity on full-field three-dimensional (3D) deformation measurement of rotary machine structures. However, it remains a challenge for underwater applications due to difficulties in imaging, stereo calibration, light refraction, and so on. In this paper, its potential in characterizing 3D dynamic deformation of the underwater rotor blades is shown by solving these problems. A stroboscopic stereo-DIC system is established to capture clear speckle images of a blade that rotates in the windowed cavitation tunnel under different flow speeds. To calibrate the stereo camera for underwater object measurement, an improved planar pattern-based calibration method and a globally optimal relative pose estimation algorithm are proposed to calibrate the intrinsic and extrinsic parameters of the stereo-DIC system separately. In particular, a novel refractive 3D reconstruction method for underwater objects is presented to recover the true 3D shape according to flat refraction geometry, ensuring the correctness and reliability of the measured 3D displacement fields. Several experiments demonstrated that the proposed stereo-DIC system and methods are feasible and accurate. Based on this, the measured dynamic displacement fields of a propeller blade are presented and discussed. Results herald a possibility for monitoring the full-field 3D dynamic response and structural health of underwater rotating structures by the proposed technique.
机译:立体声数字图像相关(立体声DIC)技术在旋转机械结构的全场三维(3D)变形测量上显示了强大的容量。然而,由于成像,立体声校准,光折射等困难,水下应用仍然是一个挑战。在本文中,通过解决这些问题,示出了其表征水下转子叶片的3D动态变形的电位。建立一个频闪的立体声DIC系统,以捕获在不同流量速度下在窗帘的空化隧道中旋转的刀片的清晰斑点图像。为了校准用于水下物体测量的立体声相机,提出了一种改进的平面图案的校准方法和全局最佳的相对姿势估计算法,以分别校准立体声系统的内在和外在参数。特别地,提出了一种用于水下物体的新型折射3D重建方法以根据平折射几何形状恢复真正的3D形状,确保测量的3D位移场的正确性和可靠性。几个实验表明,所提出的立体声系统和方法是可行和准确的。基于此,提出和讨论了螺旋桨叶片的测量动态位移场。结果通过所提出的技术监测水下旋转结构的全场3D动态响应和结构健康的可能性。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2022年第1期|108072.1-108072.16|共16页
  • 作者单位

    Shanghai Institute of Applied Mathematics and Mechanics Shanghai Key Laboratory of Mechanics in Energy Engineering School of Mechanics and Engineering Science Shanghai University Shanghai 200444 China;

    Shanghai Institute of Applied Mathematics and Mechanics Shanghai Key Laboratory of Mechanics in Energy Engineering School of Mechanics and Engineering Science Shanghai University Shanghai 200444 China;

    School of Engineering Huzhou University Huzhou 313000 China;

    China Ship Scientific Research Center Jiangsu Key Laboratory of Green Ship Technology Wuxi 214082 China;

    College of Aerospace Science and Engineering National University of Defense Technology Changsha 410073 China;

    Shanghai Institute of Applied Mathematics and Mechanics Shanghai Key Laboratory of Mechanics in Energy Engineering School of Mechanics and Engineering Science Shanghai University Shanghai 200444 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stereo digital image correlation; Stereo camera calibration; Refraction correction; Dynamic deformation measurement; Underwater propeller blade;

    机译:立体声数字图像相关;立体声相机校准;折射校正;动态变形测量;水下螺旋桨刀片;

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