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首页> 外文期刊>International Journal of Thermophysics >The Method of Instantaneous Comparisons Applied to the Calibration of SPRTs in Liquid Nitrogen and Liquid Argon
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The Method of Instantaneous Comparisons Applied to the Calibration of SPRTs in Liquid Nitrogen and Liquid Argon

机译:瞬时比较法用于液氮和液氩中SPORTs的标定

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摘要

Temperature drift is one of the most significant sources of uncertainty in the calibration of thermometers by comparison. Measuring the resistances, R_1, etc., by ratio to the resistance of a (similar) reference thermometer, R_(ref), rather than to a fixed standard resistor, R_s, allows the effect of drift to be overcome. The ratios, R_1/R_(ref), etc., represent "instantaneous comparisons" of the two thermometers. They are practically independent of temperature, so the exact temperature of the comparison (and the actual value of R_(ref) itself) is not of first importance. The key points are that the R_1/R_(ref), etc. are measured accurately, and that R_(ref) is accurately related to temperature. This paper describes the method and gives results of its application to the comparison of standard platinum resistance thermometers in liquid nitrogen and liquid argon, with repeatabilities of less than or about 0.1 mK. The method is not new, but it appears not to have been widely used or discussed in the literature. It has potential for application in all comparisons of like thermometers, in liquid baths, metal blocks, and furnaces, as well as in testing the temperature uniformity of the baths, etc., and investigations such as into thermometer stability or hysteresis. Some comparisons in conditions of rapid drift, where thermometer response times become important, are also presented.
机译:相比之下,温度漂移是温度计校准中最重要的不确定性来源之一。通过与(类似)参考温度计R_(ref)的电阻比而不是与固定标准电阻器R_s的电阻比来测量电阻R_1等,可以克服漂移的影响。比率R_1 / R_(ref)等表示两个温度计的“瞬时比较”。它们实际上与温度无关,因此比较的确切温度(以及R_(ref)本身的实际值)并不重要。关键是准确测量R_1 / R_(ref)等,并且R_(ref)与温度精确相关。本文介绍了该方法,并将其应用到液氮和液氩中标准铂电阻温度计的比较中,其重复性小于或等于0.1 mK。该方法不是新方法,但是在文献中似乎没有被广泛使用或讨论。它有潜力用于温度计的所有比较中,液体浴,金属块和熔炉中,以及测试浴的温度均匀性等,以及进行诸如温度计稳定性或滞后性的研究。还介绍了在快速漂移条件下的一些比较,在这些条件下温度计的响应时间变得很重要。

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