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INTERPOLATION EQUATIONS FOR INDUSTRIAL PLATINUM RESISTANCE THERMOMETERS

机译:工业铂电阻温度计的内插方程

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The Callendar -Van Dusen (CVD) equations of the IEC-751 for the Industrial Platinum Resistance Thermometers (IPRTs) do not exactly follow the International Temperature Scale of 1990 (ITS-90), within the required accuracy. Indeed, there is a demand for calibrations of IPRTs to uncertainties of around 10 mK for temperatures from 0 to 250°C and better than 0.1 K between 250°C and about 500°C, while the use of the CVD equations do not allow an interpolation uncertainty better than ±0.2 K over a range larger than 0-250°C. To solve this problem, two new reference equations, one below 0°C and the other above 0°C, are proposed to be used instead of the CVD equations as reference for the IPRTs. These equations will be of a higher order than the CVD equations and their lower order coefficients are equal to the constants A, B and C of the CVD. The use of these new reference equations allows an interpolation accuracy at the millikelvin level, limiting the number of calibration points in every range to five.
机译:在按Callendar -Van杜森(CVD)用于工业铂电阻温度计(IPRTs)的IEC-751的反应中不精确地跟随要求的精度内的1990(ITS-90)国际温标。事实上,存在用于IPRTs的校准对于温度为0至250℃,更好的小于0.1 K的250℃和大约500℃的需求到大约10 mK的不确定性,而采用CVD方程不允许对内插的不确定性小于±0.2℃更好的范围内比0-250℃的大。为了解决这个问题,这两个新的参考方程,一个低于0℃和高于0℃,另外,提出了用于代替所述CVD方程作为参考IPRTs。这些方程会比CVD方程较高阶的和它们的较低阶的系数等于该常数A,B和CVD的温度。使用这些新的参考方程允许在毫开尔文电平的内插精度,限制在每个范围的校准点的数目至五个。

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