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Three-dimensional feature parameters measurement of bubbles in gas-liquid two-phase flow based on virtual stereo vision

机译:基于虚拟立体视觉的气液两相流气泡三维特征参数测量

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摘要

In this paper, three-dimensional (3D) feature parameters reconstruction and measurement methods of bubbles in gas-liquid two-phase flow based on virtual stereo vision have been developed. A mathematical model of virtual stereo vision is established, and the optimized design method of structure parameters is discussed in detail. In addition, the key technologies for the 3D measurement of bubbles, including the camera calibration, the virtual stereo vision sensor calibration, image processing, feature extraction and 3D reconstruction of bubble trajectories are introduced. All the intrinsic and extrinsic parameters of two virtual cameras, as well as coefficients of lens distortion, can be estimated by the complete mathematical model of the camera. With the sensor calibration, the relative position and orientation of two virtual cameras are determined. Several improved image processing algorithms are used to extract the primary modality parameters of bubbles, and then the 3D trajectories of bubbles can be reconstructed based on the measurement model of virtual stereo vision. The experiment is tested on the upstream bubble-producing appliance. It shows that the method is valid, and the 3D trajectories of bubbles can be reconstructed with high precision. The measured absolute error of bubble 3D displacement is smaller than 0.13 mm, and the relative error is smaller than 0.49%.
机译:本文研究了基于虚拟立体视觉的三维(3D)特征参数重构和气液两相中气泡的测量方法。建立了虚拟立体视觉的数学模型,详细讨论了结构参数的优化设计方法。此外,还介绍了气泡3D测量的关键技术,包括相机校准,虚拟立体视觉传感器校准,图像处理,特征提取和气泡轨迹的3D重建。两个虚拟相机的所有内在和外在参数以及镜头畸变系数都可以通过相机的完整数学模型进行估算。通过传感器校准,可以确定两个虚拟相机的相对位置和方向。几种改进的图像处理算法用于提取气泡的主要模态参数,然后可以基于虚拟立体视觉的测量模型重建气泡的3D轨迹。该实验在上游气泡产生设备上进行了测试。结果表明,该方法是有效的,并且可以高精度重建气泡的3D轨迹。气泡3D位移的测量绝对误差小于0.13mm,相对误差小于0.49%。

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