涡轮流量计在不同粘度介质下标定曲线形态的实验研究
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TH814. 1

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国家市场监督管理总局科技计划(2017QK081)项目资助


An experimental study of turbine meter calibration curves with various viscous fluids
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    摘要:

    涡轮流量计的准确度受被测介质及其运动粘度变化的影响。 使用体积流量和仪表系数无法从变粘度实验中取得形态 一致且可预测的标定结果。 应用量纲分析导出雷诺数和斯特劳哈尔数作为描述涡轮流量计性能的无量纲参数。 通过改变丙二 醇-水溶液的体积浓度得到 5 个不同运动粘度的介质,分别用于标定一台 DN25 涡轮流量计。 对比结果表明,不同粘度下的标定 曲线在雷诺数小于 7 400 区域出现分离,标定数据最大相差 0. 9% 。 随着雷诺数增加,仪表系数中轴承阻滞部分的影响相对减 小,标定曲线簇由分散趋于聚拢, 标定数据差异小于 0. 1% 。 叶片表面的流动边界层发生层湍转捩时阻力的突变导致标定曲线 出现驼峰,运动粘度越低,驼峰趋于平缓。 轴承阻滞中的静态阻力部分是造成相同雷诺数下仪表系数差异的主要原因,这种差 异随雷诺数减小而增加,所以,当校准介质和工作介质的运动粘度有显著差异时,涡轮流量计要避免工作在低雷诺数区域。

    Abstract:

    The accuracy of the turbine meter is influenced by the measured medium and its changing kinematic viscosity. Predictability and consistency of calibrating meter factor against volume flow rate are unable to be achieved with various viscous liquids. The method of dimensional analysis is applied to derive Reynolds and Strouhal numbers to describe the performance of the turbine meter. A DN25 turbine meter is calibrated with five different mixtures of propylene glycol and water, respectively. The comparison results show that the calibration data for varied kinematic viscosity vary up to 0. 9% at Reynolds number lower than 7 400. The scattered calibration curves tend to be collapsed as the Reynolds number increases, and the calibration data vary less than 0. 1% . The rise of skin friction drag occurs at the boundary layer transition from laminar flow to turbulent flow on the rotor blade surface, which is responsible for a humpshaped calibration curve. When the kinematic viscosity is lower, the hump is flatter. The bearing static drag is the main reason for scattered meter factors, and the discrepancy tends to increase with decreasing Reynolds number. Therefore, the turbine meter should not be used for low Reynolds numbers when the kinematic viscosities of the calibration medium and the working medium are significantly different.

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刘夷平,梁艳争,朱碧玉,马 力.涡轮流量计在不同粘度介质下标定曲线形态的实验研究[J].仪器仪表学报,2022,43(2):100-107

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  • 在线发布日期: 2023-02-06
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