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AuthorCristancho, Diego
AuthorMantilla, Ivan
AuthorEjaz, Saquib
AuthorHall, Kenneth R
AuthorIglesias Silva, Gustavo
AuthorAtilhan, Mert
Available date2010-01-27T18:14:24Z
Publication Date2010-01-05
Publication NameInternational Journal of Thermophysics
CitationCristancho, D. E., Mantilla, I. D., Ejaz, S., Hall, K. R., Iglesias-Silva, G. a., & Atilhan, M. (2010). Force transmission error analysis for a high-pressure single-sinker magnetic suspension densimeter. International Journal of Thermophysics, 31, 698–709
URIhttp://hdl.handle.net/10576/10645
URIhttp://dx.doi.org/10.1007/s10765-010-0702-3
AbstractThe magnetic suspension densimeter (MSD) is a sophisticated, stateof- the-art device that provides extremely accurate results for density measurements. The MSD uses a magnetic technique to couple a mass inside a measurement cell with an external mass balance for mass measurement. This article presents a force transmission error (FTE) analysis for a high-pressure, single-sinker MSD. Due to the magnetic working principle of the apparatus, magnetic properties of the high-pressure cell and external magnetic fields affect the measurements slightly. For the analysis, McLinden et al. suggest making measurements using two different sinkers, a titanium sinker and a copper sinker, having the same mass. The measurements cover densities for methane, ethane, carbon dioxide and nitrogen over the temperature range from 265K to 450K (±5 mK stability) up to 180MPa (uncertainty of 0.01% full scale: 200MPa). Comparing and manipulating the measurements permit determination of apparatus and fluid specific effects that contribute to the FTE. For this MSD, the apparatus effect is about 200 ppm, which effectively masks any fluid specific effect. A comprehensive analysis of the FTE produces a uniform deviation for density values of about 0.05% at 2σ across the full range of pressure.
Languageen
PublisherSpringer Science and Business Media
SubjectDensimeter
Force Transmission Error
High Pressure
Magnetic Suspension Coupling
TitleForce Transmission Error Analysis for a High-Pressure Single-Sinker Magnetic Suspension Densimeter
TypeArticle
dc.accessType Abstract Only


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