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Improvement of the measurement uncertainty of a high accuracy single sinker densimeter via setup modifications based on a state point uncertainty analysis

机译:通过基于状态点不确定性分析的设置修改来改善高精度单沉降片密度计的测量不确定度

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The single sinker densimeter with magnetic suspension coupling is one of the state of the art methods for the accurate measurement of fluid densities. The uncertainties of experimental pressure, density and temperature data, measured with a single sinker densimeter, were thoroughly evaluated following the uncertainty propagation law. The main uncertainty sources of each magnitude were determined. Based on this statistical study, several modifications were performed to reduce the uncertainty associated to each magnitude. Firstly two new PTR-25 probes were added. Secondly a new pressure transducer for the low pressure range was added. Finally the sinker of the densimeter was replaced by a bigger one to improve the balance reading. After these modifications the uncertainty of each magnitude was evaluated and validated with a Monte Carlo simulation. Results yielded a significant reduction of 44percent in temperature uncertainty, more than 92percent on pressure below 2 MPa, and more than 22percent on density.
机译:具有磁悬浮耦合器的单沉降片密度计是用于精确测量流体密度的最新技术方法之一。根据不确定度传播定律,彻底评估了用单个沉降片密度计测量的实验压力,密度和温度数据的不确定度。确定了每个量级的主要不确定性来源。基于此统计研究,进行了几次修改以减少与每个量级相关的不确定性。首先,添加了两个新的PTR-25探针。其次,添加了用于低压范围的新压力传感器。最终,密度计的沉降片被更大的沉降片所代替,以改善天平读数。经过这些修改后,使用蒙特卡洛模拟评估并验证了每个量级的不确定性。结果使温度不确定性显着降低了44%,低于2 MPa的压力降低了92%以上,密度降低了22%以上。

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