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Electromagnetic Flowmeter Measurement and Numerical Computation of Laminar Flow Transport Pipeline Flow Quantity

机译:电磁流量计测量和层流量传输管道流量的数值计算

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Electromagnetic flowmeter was adopted to measure the flow quantity of coal water slurry (CWS) transport pipeline, and the average flow velocity of pipeline was calculated by using the measured inductive electromotive force value. Then the Reynolds number of fluid in the pipeline was calculated and the fluid in the CWS transport pipeline was proved to be flowing in the laminar flow state. The axial velocity of the axial flow field of CWS transport pipeline flowing in the laminar flow state was obtained by using the finite element method. The distribution of axial velocity in the CWS transport pipeline and the relationship curve between axial velocity and cross sectional diameter of pipeline axial flow field were drawn in two-dimensional plane separately. Finally, the actual average velocity and flow quantity measured by electromagnetic flowmeter and the numerical average velocity and flow quantity computed by finite element method were compared, according to the comparison results, the relative error between the average velocity measured by electromagnetic flowmeter and the average velocity computed by the finite element methods is less than 1%, and the relative error between the flow quantity measured by electromagnetic flowmeter and the flow quantity computed by the finite element methods is either less than 1%.
机译:采用电磁流量计测量煤水浆(CWS)运输管道的流量,通过使用测量的电感电动力值计算管道的平均流速。然后计算流水线中的雷诺流体数,并证明了CWS运输管道中的流体在层流状态下流动。通过使用有限元方法获得在层流状态下流动的CWS输送管道的轴向流场的轴向速度。 CWS输送管道中的轴向速度分布和管道轴流场的轴向速度和横截面直径之间的关系曲线分别在二维平面中绘制。最后,通过电磁流量计测量的实际平均速度和流量和通过有限元方法计算的数值平均速度和流量,根据比较结果,通过电磁流量计测量的平均速度与平均速度之间的相对误差由有限元方法计算的小于1%,并且电磁流量计测量的流量与有限元方法计算的流量之间的相对误差小于1%。

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