Determination of the force transmission error in a single-sinker magnetic suspension densimeter due to the fluid-specific effect and its correction for use with gas mixtures containing oxygen

Daniel Lozano-Martín, María E. Mondéjar, José J. Segovia, César R. Chamorro
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Abstract

Density measurements from single-sinker magnetic suspension densimeters need to be corrected to compensate for the magnetic effects of the measuring cell materials and the fluid on the coupling transmission system. While the magnetic effect of the densimeter materials can be easily determined, the fluid effect requires the calculation of an apparatus-specific constant, $\epsilon_{\rho}$. In this work, the apparatus-specific constant of the single-sinker magnetic suspension densimeter at the University of Valladolid has been determined by using two alternative methods. The first method, which uses density data for the same fluid and conditions and different sinkers, yielded a value of $\epsilon_{\rho}$ = $4.6\cdot10^{-5}$. The second method, obtained from measurements with pure oxygen, yielded a value of $\epsilon_{\rho}$ = $8.822\cdot10^{-5}$. The second value is considered as more reliable, as the first method presents inherent limitations in this case.
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确定单沉降片磁悬浮密度计因流体特异性效应而产生的力传递误差,并对其在含氧混合气体中的使用进行修正
单沉降片磁悬浮密度计的密度测量需要进行校正,以补偿测量池材料和液体对耦合传输系统的磁效应。密度计材料的磁效应很容易确定,而流体效应则需要计算仪器的特定常数 $\epsilon_{\rho}$。第一种方法使用相同流体和条件以及不同沉降器的密度数据,得出的数值为$\epsilon_{\rho}$ = $4.6\cdot10^{-5}$。第二种方法是用纯氧测量得到的,其值为:$epsilon_{\rho}$ =$8.822\cdot10^{-5}$。第二个值被认为更可靠,因为第一种方法在这种情况下存在固有的局限性。
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