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Vision-based Experimental Investigation of Two-phase Flow in a rising pipe

机译:基于视觉的立管两相流实验研究

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摘要

Multiphase pipeline flow is very important to oil, gas and process industry. This is a class of problems where comprehensive simulations, although desirable on physical grounds, are not practical due to the large aspect ratio between the pipe length and diameter. In order to enhance the understanding of the pipeline flow, as well as to validate and identify the critical aspects of these models, intensive experimental data are needed. This will define how these models can be improved. In this paper, we report our recent work in this aspect. A transparent pipeline, consisting of horizontal and rising sections, was established for conducting the experiments. The purpose of the experiments was to investigate the transition between the basic flow patterns. The flow states were recorded into image sequences using digital camera. Since the required viewing area was much larger than that the required magnification could be satisfied, Image sequence analysis algorithms were developed based on optical flow detection theory to overcome this issue. Apart from the algorithm and experimental results, we also report our further planed research.
机译:多相管道流量对石油,天然气和加工行业非常重要。这是一类问题,尽管出于物理原因需要进行全面的模拟,但由于管道长度和直径之间的宽高比较大,因此不可行。为了增强对管道流动的理解,以及验证和确定这些模型的关键方面,需要大量的实验数据。这将定义如何改进这些模型。在本文中,我们报告了我们在这方面的最新工作。建立了由水平部分和上升部分组成的透明管道进行实验。实验的目的是研究基本流动模式之间的过渡。使用数码相机将流动状态记录为图像序列。由于所需的观看区域远大于可以满足的所需放大倍数,因此基于光流检测理论开发了图像序列分析算法来克服此问题。除了算法和实验结果,我们还报告了我们进一步计划的研究。

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