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Traceability of gravity acceleration measurement in calibration laboratories

机译:校准实验室中重力加速度测量的可追溯性

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Primary measurements of force, torque and pressure are directly influenced by local gravity acceleration, g. At present, g measurement in calibration laboratories is evaluated through absolute or relative measurements or through theoretical/empirical relations. Except for some absolute measurements, other methods are not traceable. As consequence, measurements of these quantities could be highly impacted by this lack in terms of accuracy and uncertainty. The Consultative Committee for Mass and related quantities (CCM) of CIPM and International Association of Geodesy (IAG) are currently working on a resolution strategy to ensure traceability to the SI for gravity measurements through the establishment of a global absolute gravity reference system. This network could become a useful tool to transfer the g measurement to calibration laboratories at international level. However, as well any other measurements, this possible solution should be established under the Quality Management system of accredited laboratories.
机译:力,扭矩和压力的主要测量直接受到局部重力加速度的影响。目前,通过绝对或相对测量或通过理论/经验关系来评估校准实验室中的G测量。除了一些绝对测量外,其他方法不可追溯。结果,在准确性和不确定性方面,这些数量的测量可能受到影响。 CIPM和国际大量地区(IAG)的大众及相关数量(CCM)协商委员会目前正在制定决议策略,以确保通过建立全球绝对重力参考系统来确保重力测量的SI进行可追溯性。该网络可能成为将G测量转移到国际层面校准实验室的有用工具。然而,还有任何其他测量,应根据认可的实验室质量管理体系建立这种可能的解决方案。

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