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A Comparison of 12 US Liquid Hydrocarbon Flow Standards and the Transition to Safer Calibration Liquids

机译:12种美国液态烃流量标准的比较以及向更安全的校准液的过渡

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During 2010 and 2011, NIST piloted a 12-laboratory comparison of hydrocarbon liquid flow calibration standards spanning the range 3.8 L/min to 38 L/min. The laboratories were in mutual agreement within the expected 0.3percent uncertainty, which is approximately half as large as the differences measured in a similar 1988 comparison. The transfer standard (a pair of turbine flow meters in series) introduced an uncertainty of 0.17percent into the comparison. The comparison protocol used methods that were developed during international comparisons including: using uncertainty weighting to generate a best fit comparison reference curve, using statistical criteria to remove discrepant results from the fit, assessing and including in the data analysis the uncertainty contributed by the transfer standard, and reporting a standardized degree of equivalence between the participants. Several laboratories used mixtures of propylene glycol and water (PG + W) instead of Stoddard solvent (the commonly used surrogate for jet fuel) because the PG+W mixtures are safer and cheaper to manage environmentally. This comparison and other studies show that there is no significant difference in the calibration results between Stoddard solvent and a PG + W mixture with the same kinematic viscosity. Therefore, NIST is changing its calibration fluid to PG + W and encourages other laboratories to do the same.
机译:在2010年和2011年期间,NIST进行了12个实验室的烃液流量校准标准比较试验,其校准范围为3.8 L / min至38 L / min。在预期的0.3%的不确定性范围内,实验室相互同意,这大约是1988年类似比较中测得的差异的一半。转换标准(一对涡轮流量计串联)在比较中引入了0.17%的不确定性。比较方案使用的是国际比较中开发的方法,包括:使用不确定度加权生成最佳拟合比较参考曲线,使用统计标准从拟合中去除差异结果,评估并在数据分析中包括转移标准带来的不确定性,并报告参与者之间的标准化对等程度。一些实验室使用丙二醇和水的混合物(PG + W)代替Stoddard溶剂(常用的喷气燃料替代品),因为PG + W混合物在环境管理方面更安全,更便宜。该比较和其他研究表明,Stoddard溶剂和具有相同运动粘度的PG + W混合物在校准结果上没有显着差异。因此,NIST正在将其校准液更改为PG + W,并鼓励其他实验室也这样做。

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