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Gas-liquid two-phase flow measurements by the electromagnetic flowmeter combined with a phase-isolation method

机译:通过电磁流量计与相隔离方法结合的气液两相流量测量

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摘要

The electromagnetic flowmeter has presented excellent performance in single-phase flow. However, there are many fundamental difficulties when it is applied in two-phase flow. The presence of the insulating phase at various positions in two-phase flow strongly influences the distribution of the weight function, consequently resulting in the uncertainty and instability of the electromagnetic flowmeter's output. When the insulating phase contact with the electrode, it even leads to wrong alarm. In this paper, at the upstream of the electromagnetic flowmeter a phase-isolation method was used to change the inlet flow pattern into a uniform and symmetrical swirling core-annular flow, in which gas-liquid mixture was isolated to gas core and liquid annular flows flowing concurrently in the transmission pipe with a clear smooth interface between them. Then we analysed the behavior of the electromagnetic flowmeter performed in this specific flow pattern, and built the liquid flow rate measurement model. Besides, the void fraction was measured by image processing technique. Owing to the clear smooth interface, the difficulty of image processing and the measurement error of the void fraction can be reduced. The experimental results showed that, the combination of the phase-isolation method could improve the measurement accuracy and successfully make the electromagnetic flowmeter available for the gas-liquid two-phase flow where the original phase distribution is not uniform.
机译:电磁流量计在单相流中呈现出优异的性能。然而,在两相流中施加时存在许多根本困难。在两相流动中的各个位置处存在绝缘相的存在强烈影响重量函数的分布,从而导致电磁流量计的输出的不确定和不稳定性。当绝缘相位与电极接触时,它甚至会导致错误的警报。在本文中,在电磁流量计的上游,使用相隔离方法将入口流动图案改变为均匀且对称的旋流芯环流量,其中将气液混合物分离为气体芯和液体环形流动在传输管道中同时流动,在它们之间具有清晰的光滑界面。然后,我们分析了在该特定流动模式中进行的电磁流量计的行为,并构建了液体流速测量模型。此外,通过图像处理技术测量空隙率。由于透明的光滑界面,可以降低图像处理的难度和空隙分数的测量误差。实验结果表明,相隔离方法的组合可以提高测量精度并成功使电磁流量计可用于原始相分布不均匀的气液两相流。

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