A Novel Spiral Electromagnetic Induction Sensor for the Measurement of Phase Holdup

Xu Kai, Guang Chen, Jianna Hao, W. Yin
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引用次数: 2

Abstract

In two-phase (gas/liquid or liquid/liquid) flow measurements, phase holdup is an important parameter. Electromagnetic induction techniques have been applied for determining this parameter. However, due to inhomogeneous sensitivity of the conventional inductive sensors, the accuracy in measuring phase holdup is seriously affected by flow regimes. To overcome this problem, multiple sensor configurations such as MIT have been considered; however, the sensitivity maps of MIT are not homogenous and in addition, the complexity of a multiple channels measurement system increases significantly. In this paper, a novel spiral electromagnetic induction sensor was proposed. The sensitivity matrices of four different configurations of the sensor were calculated using MATLAB. Both simulations and experiments were carried out, which proved that the spiral style sensors have increased and more homogenous sensitivity distributions, making it more suitable for phase holdup measurement.
一种新型的螺旋电磁感应相持率测量传感器
在两相(气/液或液/液)流量测量中,相含率是一个重要参数。电磁感应技术已被应用于该参数的测定。然而,由于传统电感式传感器的灵敏度不均匀,测量相含率的精度受到流型的严重影响。为了克服这个问题,已经考虑了MIT等多种传感器配置;然而,MIT的灵敏度图并不均匀,而且多通道测量系统的复杂性显著增加。本文提出了一种新型的螺旋电磁感应传感器。利用MATLAB计算了四种不同传感器结构的灵敏度矩阵。仿真和实验结果表明,螺旋型传感器的灵敏度分布增大且更加均匀,更适合于相持率的测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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