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Design of experiments for optimising acceptance calibration criteria for pressure and temperature transmitters of gas flowmeters

机译:用于优化验收校准标准的实验设计,用于气体流量计的压力和温度变送器

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摘要

Calibration acceptance criteria for pressure and temperature measuring devices used in orifice plate gas flowmeters were specified. The study was motivated by the introduction of a Brazilian regulation that specifies technical and legal requirements for in-field measurements of oil and gas flows. In compliance with international best practices, the applicable regulation, which establishes uncertainty levels for flow measurements (1.5% for fiscal/custody transfer measurements and 2% for appropriation measurements), did not set up limits of acceptance of uncertainties associated with pressure and temperature measuring devices. The effects of these uncertainties in measurements were evaluated. By making use of the Design of Experiments and Response Surface Method (RSM), acceptance criteria were sought to comply with the applicable regulation. The use of the methodology proved to be very useful as low uncertainties were obtained in all ten metering stations investigated. In the worst cases (in three stations only), uncertainties were lower than 0.2% of the correspondent full-scale reading. The response surface methodology also showed that the minimum measuring capacity to meet the regulatory uncertainty requirements are 0.05% for differential pressure calibrators and 0.01% for the static pressure (relative to the full-scale reading).
机译:指定了孔板气流量计中使用的压力和温度测量装置的校准验收标准。该研究是通过引入巴西法规的推动,规定了石油和天然气流通的现场测量技术和法律要求。符合国际最佳实践,建立流量测量的不确定性水平的适用条例(财政/监管转让测量的1.5%和拨款测量的2%),未建立接受与压力和温度测量相关的不确定性的限制设备。评估了这些不确定性在测量中的影响。通过利用实验和响应面法(RSM)的设计,寻求验收标准符合适用的规定。在调查的所有十个计量站中获得了将方法的使用被证明是非常有用的。在最糟糕的情况下(仅限三个站),不确定性低于相应的全面读数的0.2%。响应面方法还表明,差压校准器的稳定性不确定性要求的最小测量能力为0.05%,静压的0.01%(相对于全尺寸读数)。

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