Accounting for the effects of gas species on piston gauge calculated area: absolute mode

F. Jones, B. E. Welch
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引用次数: 2

Abstract

A model has been developed, and tested experimentally, to account for the apparent dependence of the effective cross-sectional area of pistons in gas-piston-gauge pressure standards on the particular gas with which the gauge is operated, in the absolute mode. The model treats a pressure drop or loss that depends on the pressure difference across the gauge (P1-P2), the fall rate of the piston, the density of the gas and the viscosity of the gas. The model was tested using helium, neon, argon, nitrogen and krypton, and several values of (P1-P2). An algorithm was developed for calculating the piston cross-sectional area. The experimental results confirmed the model and resulted in a reduction in measurement uncertainty arising from this effect by approximately one order of magnitude.
考虑气体种类对活塞计计算面积的影响:绝对模式
已经建立了一个模型,并进行了实验测试,以解释气体-活塞-压力表压力标准中活塞的有效截面积明显依赖于压力表在绝对模式下使用的特定气体。该模型处理的压降或损失取决于压力表(P1-P2)上的压差、活塞的下降速率、气体的密度和气体的粘度。用氦、氖、氩、氮和氪以及(P1-P2)的几个值对模型进行了测试。提出了一种计算活塞截面积的算法。实验结果证实了该模型,并导致由该效应引起的测量不确定度降低了大约一个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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