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CORRECTION OF FLOW METERING COEFFICIENTS USING TWO-DIMENSIONAL CURVE FITTING

机译:使用二维曲线拟合校正流量计量系数

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Swirl flows are either tumbling motions of main flows or circulating secondary flows in the cross-section of pipe, which makes accurate flow metering difficult without installing a long straight pipe upstream of a flow meter. However, there are many situations, where such long upstream/downstream pipelines cannot be installed due to limited space in the installation site for flow metering. The relative deviations of flow rates between the testing and the reference flow meters can be reduced by introducing a correction formula. The correction formula considers flow parameters such as curve number, swirl factor, Reynolds number and two non-dimensional numbers regarding installation of flow meters. Nonetheless, there are certain flows where the correction formula is not effective due to strong swirl flows. Two-dimensional curve fitting is introduced in the present study to solve some of difficulties in compensating flow rates due to swirl flows upstream/downstream of flow control elements, i.e., a contraction pipe, an expansion pipe, a single elbow and a butterfly valve. This method minimizes the gap between the measured and the estimated flow rates by applying the Levenberg-Marquardt algorithm. 2nd or 4th order polynomials with two independent variables, i.e., Reynolds number and a non-dimensional location of testing flow meter, are chosen to test their ability to compensate flow rates. From this study, the relative deviations were maintained within ±2 % by applying the two-dimensional curve fitting.
机译:旋流是管道横截面中主流的滚动运动或二次流的循环运动,这使得很难在不将长的直管安装在流量计上游的情况下进行精确的流量计量。但是,在许多情况下,由于安装场所中用于流量计量的空间有限,因此无法安装如此长的上游/下游管道。通过引入校正公式,可以减小测试流量计与参考流量计之间的相对流量偏差。校正公式考虑了流量参数,例如曲线数,旋流因子,雷诺数和有关流量计安装的两个无量纲数。但是,在某些流量中,由于强旋流,校正公式无效。在本研究中引入了二维曲线拟合,以解决由于流量控制元件(即收缩管,膨胀管,单个弯头和蝶形阀)的上游/下游旋流而造成的补偿流量方面的一些困难。通过应用Levenberg-Marquardt算法,该方法可最大程度地减小测量流量与估计流量之间的差距。选择具有两个自变量(即雷诺数和测试流量计的无量纲位置)的二阶或四阶多项式来测试其补偿流量的能力。根据这项研究,通过应用二维曲线拟合,相对偏差保持在±2%以内。

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