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Relative errors in evaluating the electromagnetic flowmeter signal using the weight function method and the finite volume method

机译:使用权函数法和有限体积法评估电磁流量计信号时的相对误差

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摘要

In the signal analysis of an electromagnetic flowmeter, the weight function method (WFM) involves a numerical integration of products between the magnetic flux density vector, the weight function and the velocity profile function intwo-dimensional analysis. The electromagnetic flowmeter signal can also be predicted by solving the governing flowmeter equation by the finite volume method (FVM). The present study is aimed at comparing the calculation accuracies of WFM and FVM. The test flows are fully developed laminar and turbulent flows in a straight pipe under uniformly distributed magnetic field. The calculation accuracies are also compared between different O-type grid systems. It was found that the accuracy of both methodsdepended strongly on the grid system. In particular, for turbulent flow whose axial velocity component changes very rapidly near the wall, the accuracy of WFM was found to depend strongly on the cell configuration near the electrodes.
机译:在电磁流量计的信号分析中,权函数法(WFM)涉及二维分析中磁通密度矢量,权函数和速度分布函数之间乘积的数值积分。电磁流量计信号也可以通过用有限体积法(FVM)求解控制流量计方程来预测。本研究旨在比较WFM和FVM的计算精度。在均匀分布的磁场下,测试流是在直管中完全展开的层流和湍流。还比较了不同O型网格系统之间的计算精度。结果发现,这两种方法的准确性在很大程度上取决于网格系统。特别是对于湍流,其轴向速度分量在壁附近变化非常快,发现WFM的精度在很大程度上取决于电极附近的电池结构。

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