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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Extrapolation and Curve-Fitting of Calibration Data for Differential Pressure Flow Meters
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Extrapolation and Curve-Fitting of Calibration Data for Differential Pressure Flow Meters

机译:差压流量计校准数据的外推和曲线拟合

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摘要

Performance test codes require primary mass-flow accuracies that in many applications require laboratory quality calibration of differential pressure meters. It is also true that many performance tests are conducted at Reynolds numbers and flows well above the laboratories' capacities, and sound extrapolation methods had to be developed. Statistical curve fits and regression analyses by themselves, absent fluid-dynamic foundations, are not valid procedures for extrapolation. The ASME PTC 19.5-2004 discharge coefficient equations reproduced in this paper for nozzles, orifices, and Venturis are suitable for use whenever calibration data are to be applied in a flow measurement and/or extrapolated to higher Reynolds numbers as necessary. The equations may also be used for uncalibrated differential pressure meters by using nominal values. It is necessary to note that the metering runs must be manufactured with dimensions, tolerances, smoothness, etc., and installed in strict accordance with ASME PTC 19.5 for these equations to be valid. Note that for compressible flow, the value of the expansion factor term in the PTC 19.5 equation must be the one corresponding to the published PTC 19.5 equation.
机译:性能测试代码要求主要的质量流量精度,而在许多应用中,这些精度要求对差压计进行实验室质量校准。的确,许多性能测试都是在雷诺数下进行的,并且流量远远超出实验室的能力,因此必须开发合理的外推方法。缺少流体动力学基础的统计曲线拟合和回归分析本身不是有效的外推程序。本文中针对喷嘴,节流孔和Venturis复制的ASME PTC 19.5-2004排放系数方程式适用于在流量测量中应用校准数据和/或根据需要外推至更高的雷诺数的情况。通过使用标称值,这些方程式也可用于未校准的压差计。需要注意的是,计量管路必须具有一定的尺寸,公差,光滑度等,并严格按照ASME PTC 19.5进行安装,以使这些方程式有效。请注意,对于可压缩流,PTC 19.5公式中的膨胀系数项的值必须是与已发布的PTC 19.5公式相对应的值。

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