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Application and Uncertainty Analysis of a New Balance used in Natural Gas Primary Standard up to 60bar

机译:天然气主要标准中使用的新余额的应用和不确定性分析高达60bar

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A new 3-ton electromagnetic balance system was designed and built up for a high level mass-time primary standard of natural gas up to 60bar in CVB. The system is composed of a 3-ton electromagnetic balance, two tanks with thermal isolation, two platforms, two roller guide rails and two big weights which are used for special test. To achieve a lower uncertainty and the security application in natural gas measurement, several special methods were used in the system. Firstly, the tanks and platforms can be moved together steadily on the roller guide rail to be connected with pipeline system or to be weighted by the balance which also reduces the pipeline length between tanks and pipeline system. Secondly, the substitute weighing method is used for high accurate weighting. Finally, the whole system is located in a thermal isolated room with temperature and humidity controlling. Technical details, performance tests, uncertainty analysis and the future improvement ideas of the balance system are presented in the paper. The uncertainty analysis shows that the mass measurement uncertainty of gas can achieve less than 1.0g and the relative standard uncertainty of natural gas mass measurement can achieve less than 0.02%.
机译:设计了新的3吨电磁平衡系统,为CVB中的高达60bar的高水平质量初级标准设计和建立。该系统由3吨电磁平衡组成,两个坦克,具有热隔离,两个平台,两个辊导轨和两个用于特殊测试的大重量。为了实现较低的不确定性和天然气测量中的安全应用,系统中使用了几种特殊方法。首先,罐和平台可以稳定地在滚轮导轨上移动,以与管道系统连接,或者由平衡加权,这也降低了罐和管道系统之间的管道长度。其次,替代称重方法用于高精度加权。最后,整个系统位于温度和湿度控制的热隔离室中。本文提出了技术细节,性能测试,不确定性分析和平衡系统的未来改善思路。不确定性分析表明,气体的质量测量不确定性可以达到小于1.0克,并且天然气质量测量的相对标准不确定性可以达到小于0.02%。

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