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DA-00-10-3 -- Vapor-Liquid Equilibria for a Lubricant Mixture: Measurements and Equation-of-State Modeling

DA-00-10-3 -- Vapor-Liquid Equilibria for a Lubricant Mixture: Measurements and Equation-of-State Modeling

Conference Proceeding published 2000 by ASHRAE

Written By Marcia L. Huber, Ph.D., Cynthia D. Holcomb, Ph.D., Stephanie L. Outcalt, J. Richard Elliott, Ph.D.

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We measured bubble point pressures and coexisting liquid densities for two mixtures of R-134a and a polyolester (POE) lubricant. The mass fraction of the lubricant was approximately 9% and 12%, and the temperature ranged from 280 K to 355 K (44°F to 179°F). We used the Elliott, Suresh, and Donohue (ESD) equation of state to model our bubble point pressure data. The bubble point pressures were represented with an average absolute deviation of 2.5%. A binary interaction parameter reduced the deviation to 1.4%. We also applied the ESD model to other R-134a/POE lubricant data in the literature. As the concentration of the lubricant increased, the performance of the model deteriorated markedly. However, the use of a single binary interaction parameter reduced the deviations significantly.

Units: Dual

Citation: Symposium, ASHRAE Transactions, vol. 106, pt. 1

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