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Thermal conductivity data for refrigerant mixtures containing R1234YF AND R1234ZE(E)

Mylona, Sofia K. and Hughes, Thomas J. and Saeed, Amina A. and Rowland, Darren and Park, Juwoon and Tsuji, Tomoya and Tanaka, Yukio and Seiki, Yoshio and May, Eric F. (2019) Thermal conductivity data for refrigerant mixtures containing R1234YF AND R1234ZE(E). Journal of Chemical Thermodynamics, 133 . pp. 135-142. ISSN 0021-9614

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Official URL: http://dx.doi.org/110.1016/j.jct.2019.01.028

Abstract

Thermal conductivities of binary refrigerant mixtures (R125 + R152a), (R125 + R1234ze(E)), (R143a + R1234ze(E)), (R143a + R1234yf), (R1234ze(E) + R1234yf), (R125 + R1234yf), and (R134a + R1234ze(E)) were measured in the homogeneous liquid and vapour phases using the transient hot-wire technique. The measurements span temperatures from (260 to 414) K with pressures from (0.9 to 3.1) MPa. Two transient hot-wire sensors designed for measurements in the liquid and the vapour phase, respectively, were used and the relative uncertainty of both was estimated to be 1% or better for pure fluids. The performance of the sensor for the liquid phase was verified with water and toluene while argon was used to validate the sensor for the vapour phase. These measurements and previously published data were used to tune binary interaction parameters in the extended corresponding states model implemented in the NIST software REFPROP 9.1. Deviations between the tuned model and measured thermal conductivities were mostly within ±3% which is consistent with the uncertainties of the reference equations of the pure fluids.

Item Type:Article
Uncontrolled Keywords:thermal conductivity, transient hot-wire
Subjects:T Technology > TA Engineering (General). Civil engineering (General)
Divisions:Malaysia-Japan International Institute of Technology
ID Code:88647
Deposited By: Yanti Mohd Shah
Deposited On:15 Dec 2020 10:36
Last Modified:15 Dec 2020 10:36

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