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Proposed method for reconstructing velocity profiles using a multi-electrode electromagnetic flow meter

机译:提出的使用多电极电磁流量计重建速度分布的方法

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摘要

An analytical method is developed for the reconstruction of velocity profiles using measured potential distributions obtained around the boundary of a multi-electrode electromagnetic flow meter (EMFM). The method is based on the discrete Fourier transform (DFT), and is implemented in Matlab. The method assumes the velocity profile in a section of a pipe as a superposition of polynomials up to sixth order. Each polynomial component is defined along a specific direction in the plane of the pipe section. For a potential distribution obtained in a uniform magnetic field, this direction is not unique for quadratic and higher-order components; thus, multiple possible solutions exist for the reconstructed velocity profile. A procedure for choosing the optimum velocity profile is proposed. It is applicable for single-phase or two-phase flows, and requires measurement of the potential distribution in a non-uniform magnetic field. The potential distribution in this non-uniform magnetic field is also calculated for the possible solutions using weight values. Then, the velocity profile with the calculated potential distribution which is closest to the measured one provides the optimum solution. The reliability of the method is first demonstrated by reconstructing an artificial velocity profile defined by polynomial functions. Next, velocity profiles in different two-phase flows, based on results from the literature, are used to define the input velocity fields. In all cases, COMSOL Multiphysics is used to model the physical specifications of the EMFM and to simulate the measurements; thus, COMSOL simulations produce the potential distributions on the internal circumference of the flow pipe. These potential distributions serve as inputs for the analytical method. The reconstructed velocity profiles show satisfactory agreement with the input velocity profiles. The method described in this paper is most suitable for stratified flows and is not applicable to axisymmetric flows in its present form. Its novelty is that it provides not only a mean flow velocity, but a velocity distribution in a circular pipe section as an analytical function of the spatial coordinates.
机译:开发了一种分析方法,该方法使用在多电极电磁流量计(EMFM)的边界周围获得的测得的电位分布来重建速度曲线。该方法基于离散傅里叶变换(DFT),并在Matlab中实现。该方法将管道截面中的速度分布假定为多项式的叠加,直到第六阶为止。每个多项式分量都沿管段平面中的特定方向定义。对于在均匀磁场中获得的电势分布,该方向对于二次分量和高阶分量不是唯一的。因此,对于重建的速度分布,存在多种可能的解决方案。提出了一种选择最佳速度曲线的程序。它适用于单相或两相流,并且需要测量非均匀磁场中的电势分布。还使用权重值为可能的解决方案计算了此非均匀磁场中的电势分布。然后,所计算的电位分布最接近所测电位分布的速度分布图提供了最佳解决方案。该方法的可靠性首先通过重建由多项式函数定义的人工速度曲线来证明。接下来,基于文献的结果,使用不同的两相流中的速度曲线来定义输入速度场。在所有情况下,COMSOL Multiphysics都用于对EMFM的物理规格进行建模并模拟测量结果。因此,COMSOL仿真可在流管的内圆周上产生电势分布。这些电位分布可作为分析方法的输入。重建的速度曲线与输入速度曲线显示出令人满意的一致性。本文描述的方法最适合分层流,不适用于当前形式的轴对称流。其新颖之处在于,它不仅提供了平均流速,而且还提供了圆管截面中的速度分布作为空间坐标的解析函数。

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