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A study on the pressure gradient effect due to a leak in a pressure calibration system

机译:压力校准系统中由于泄漏引起的压力梯度效应的研究

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摘要

Leaks in a pressure calibration system should be as small as possible in order to reduce the pressure difference between the pressure standard and the device under test (DUT). However, a pressure calibration system that is perfectly sealed from the external environment does not exist, and a pressure difference due to leakage can affect the calibration results. This type of effect should be evaluated precisely because DUTs, such as precise digital pressure gauges with resolutions of less than 1 part in 10~(6), are used widely in industry and the pressure difference due to the leak effect is expected to be larger than the resolution of the DUTs. In addition, precise digital pressure gauges for intercomparisons have been used as transfer standards to determine the degree of equivalence of pressure measurement standards among national measurement institutes (NMIs). This paper explores the leak effect using a leak control valve when a precise digital pressure gauge is calibrated using a pressure balance up to 100 kPa in an absolute mode. Experiments were performed according to an applied pressure, leak amount, tube length and pressure media. It is concluded that the uncertainty caused by a possible leak should be included in the uncertainty evaluation of the calibration results.
机译:压力校准系统中的泄漏应尽可能小,以减小压力标准件与被测设备(DUT)之间的压力差。但是,不存在与外部环境完全密封的压力校准系统,并且由于泄漏引起的压力差会影响校准结果。应该精确评估这种类型的影响,因为DUT(例如分辨率小于10〜(6)的1的精确数字压力计)已在工业中广泛使用,并且由于泄漏效应而引起的压差预计会更大而不是DUT的分辨率。此外,用于比对的精确数字压力表已被用作传输标准,以确定国家测量机构(NMI)之间压力测量标准的等效程度。本文探讨了在绝对模式下使用高达100 kPa的压力平衡校准精密数字压力表时,使用泄漏控制阀的泄漏效果。根据施加的压力,泄漏量,管长和压力介质进行实验。结论是,可能的泄漏引起的不确定度应包括在校准结果的不确定度评估中。

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