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首页> 外文期刊>Advances in Mechanical Engineering >Multibubbles Segmentation and Characteristic Measurement in Gas-Liquid Two-Phase Flow
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Multibubbles Segmentation and Characteristic Measurement in Gas-Liquid Two-Phase Flow

机译:气液两相流中的多气泡分段和特征测量

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摘要

Gas-liquid two-phase flow is a typical flow, and bubble characteristic measurement is of great importance to discover flow mechanism and guide the practical fluid mechanical engineering. In this paper, a virtual stereo vision measurement system mainly consists of a high-speed camera, and two optical reflector sets was established, and bubble images in gas-liquid two-phase flow were captured by the optimized virtual stereo vision sensor. Overlapping bubbles segmentation is indispensable for the images, and an effective multibubbles segmentation method was proposed. Firstly the convexities of the overlapped area were identified based on the chain code difference, and the pseudoconcave points were removed based on the concave length constraint. According to the matching principle of concave points, the segmentation area was clarified, and the overlapping bubbles were segmented effectively. Therefore, the modality and motion feature parameters of bubbles were estimated, and three-dimensional bubble trajectories and velocity vector field were reconstructed according to the measurement model of virtual stereo vision. The experimental results show that the segmentation and characteristic measurement method of multibubbles is valid and with high precision.
机译:气液两相流是一种典型的流动,气泡特征的测量对于发现流动机理和指导实际的流体力学工程具有重要意义。本文以一个高速摄像头为主要组成的虚拟立体视觉测量系统,建立了两个光学反射镜组,并通过优化的虚拟立体视觉传感器捕获了气液两相流中的气泡图像。对于图像,重叠气泡分割是必不可少的,提出了一种有效的多气泡分割方法。首先根据链码差异识别重叠区域的凸面,并根据凹面长度约束条件去除伪凹点。根据凹点的匹配原理,明确了分割区域,对重叠的气泡进行了有效的分割。因此,估计了气泡的模态和运动特征参数,并根据虚拟立体视觉的测量模型重建了三维气泡轨迹和速度矢量场。实验结果表明,多气泡的分割和特征测量方法是有效的,具有较高的精度。

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