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CFD ANALYSIS AND IMPROVEMENT ON AN INSERTION ELECTROMAGNETIC FLOWMETER

机译:插入电磁流量计的CFD分析及改进

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Accurate measurement of the volumetric flow rate of working liquids is essential for process control, as well as energy consumption evaluation. Electromagnetic flowmeters have gained popularity in applications where low pressure drop and low maintenance are required. Dwyer Instruments, Inc., recently developed an adjustable insertion electromagnetic flowmeter (IEF) featuring accurate and reliable measurement. However, an unexpected and non-repeatable behavior in the K-factor was observed during the calibration process. The K-factor is the coefficient that is used to convert the measured electric potential to the flow velocity in pipes and the non-repeatable behavior imposes challenges for precise measurement. A one-way coupled magnetohydrodynamics model was developed to reduce the effort and time of on-site troubleshooting and optimization. By modeling the measurement process, the transition of flow regimes and the regeneration of boundary layer on the electrode surface were identified as the causes to the non-repeatable issue. Then, a series of parametric studies were performed to provide reliable solutions. A new design with further embedded electrodes was recommended. The field test showed great repeatability by using the new design and the non-repeatable issue was completely resolved. The improvement in the IEF design was implemented in production in less than one week and it reduced the calibration time by 50%.
机译:精确测量工作液体的体积流速对于过程控制至关重要,以及能耗评估。电磁流量计在需要低压降低和低维护的应用中获得了普及。 Dwyer Instruments,Inc。最近开发了可调节的插入电磁流量计(IEF),其测量准确可靠。然而,在校准过程期间观察到K因子中的意外和不可重复的行为。 K因子是用于将测量的电位转换为管道中的流速的系数,并且不可重复行为施加挑战以精确测量。开发了一种单向耦合磁力流体动力学模型,以减少现场故障排除和优化的努力和时间。通过对测量过程进行建模,将流动状态的转变和电极表面上的边界层再生被鉴定为对不可重复问题的原因。然后,进行一系列参数研究以提供可靠的解决方案。建议使用具有进一步嵌入式电极的新设计。现场测试通过使用新设计显示出巨大的可重复性,并且完全解决了不可重复的问题。 IEF设计的改进在不到一周的生产中实施,并且它将校准时间减少了50%。

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