Small Corrections to 1989 NIST Constant-Volume Gas Thermometry Data

IF 2.1 3区 工程技术 Q2 INSTRUMENTS & INSTRUMENTATION Metrologia Pub Date : 2023-11-07 DOI:10.1088/1681-7575/ad0a35
Allan H Harvey
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Abstract

Abstract Constant-volume gas thermometry data published in 1989 for the difference between the thermodynamic temperature and the International Practical Temperature Scale of 1968 are corrected in two ways. A refined estimate of the thermal expansivity of the material of the gas bulb, published in 1990, increases the thermodynamic temperature by amounts on the order of 1 mK to 3 mK. Better knowledge of the nonideality of helium gas reduces the uncertainty of the nonideality correction to near zero and decreases the thermodynamic temperature by amounts on the order of 0.1 mK to 0.5 mK. The net effect is a small increase in the thermodynamic temperature derived from the 1989 experiments. The magnitude of this increase is approximately 2 mK at 505 K, increasing to 3 mK at temperatures near 700 K, and then diminishing to near 0.5 mK at the highest temperature of the measurements (933 K). These corrections are smaller than the uncertainty of the experiments, but may be of significance for future recommendations for the relationship between the thermodynamic temperature and the consensus scale in this temperature range.
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1989年NIST定容气体测温数据的小修正
摘要1989年公布的恒容气体测温资料对热力学温度与1968年国际实用温标的差异进行了两种方法的校正。精制估计材料的热膨胀系数的气体球,出版于1990年,增加了热力学温度可通过大量的1到3可更好的知识nonideality氦气降低nonideality校正至接近零的水平的不确定性,减少数量的热力学温度的0.1可到0.5可净效应是一个小的热力学温度增加源自1989年的实验。这种增加的幅度在505 K时约为2 mK,在接近700 K时增加到3 mK,然后在测量的最高温度(933 K)时减小到接近0.5 mK。这些修正比实验的不确定性要小,但可能对未来建议热力学温度与该温度范围内一致尺度之间的关系具有重要意义。
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来源期刊
Metrologia
Metrologia 工程技术-物理:应用
CiteScore
2.80
自引率
25.00%
发文量
137
审稿时长
12 months
期刊介绍: Published 6 times per year, Metrologia covers the fundamentals of measurements, particularly those dealing with the seven base units of the International System of Units (metre, kilogram, second, ampere, kelvin, candela, mole) or proposals to replace them. The journal also publishes papers that contribute to the solution of difficult measurement problems and improve the accuracy of derived units and constants that are of fundamental importance to physics. In addition to regular papers, the journal publishes review articles, issues devoted to single topics of timely interest and occasional conference proceedings. Letters to the Editor and Short Communications (generally three pages or less) are also considered.
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