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International Journal of Thermophysics

Journal of Thermophysical Properties and Thermophysics and Its Applications

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International Journal of Thermophysics - 2021 Ared Cezairliyan Best Paper Award


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It is our great pleasure to announce that in recognition of an outstanding contribution to the field of thermophysics research

THE 2021 ARED CEZAIRLIYAN BEST PAPER AWARD

is awarded to the paper titled “Measurement and Correlation of the Thermal Conductivity of cis-1,1,1,4,4,4-hexafluoro-2-butene (this opens in a new tab)”, International Journal of Thermophysics 41:103 (2020)

authored by

  • Dr Richard A. Perkins, NIST, USA
  • Dr Marcia L. Huber, NIST, USA


The Cezairliyan Award recognises that the paper, published in 2020 in IJT, is judged to make a significant advance in the field of thermophysics. The certificate and the cash award of €1,500 for the authors, will probably be presented on the Awards Ceremony of the Symposium of Thermophysical Properties (this opens in a new tab), that will take place virtually, on June 20-25, 2021, in Boulder, CO, USA.

Marc J. Assael
Editor-in-Chief, IJT

Tom Spicer
Editorial Director Physics, Springer


The awarded paper was selected from the following 16 short-listed ones (from 170 published in 2020).

  1. Webster, E; Saunders, P, “Characterizing Drift Behavior in Type S Thermocouples to Predict In-use Temperature Errors (this opens in a new tab)”, Int. J. Thermophys. 41:5 (2020)
  2. Gliere, A; Barritault, P; Berthelot, A; Constancias, C; Coutard, JG; Desloges, B; Duraffourg, L; Fedeli, JM; Garcia, M; Lartigue, O; Lhermet, H; Marchant, A; Rouxel, J; Skubich, J; Teulle, A; Verdot, T; Nicoletti, S, “Downsizing and Silicon Integration of Photoacoustic Gas Cells (this opens in a new tab)”, Int. J. Thermophys. 41:16 (2020)
  3. Lohofer, G, “Viscosity Measurement by the Oscillating Drop Method: The Case of Strongly Damped Oscillations”, Int. J. Thermophys. 41:30 (2020)
  4. Widiatmo, JV; Misawa, T; Nakano, T; Saito, I,”Thermodynamic Temperature Measurements from the Triple Point of Water up to the Melting Point of Gallium (this opens in a new tab)”, Int. J. Thermophys. 41:42 (2020)
  5. Korobeinikov, I; Chebykin, D; Seetharaman, S; Volkova, O, “Effect of Boron Micro-alloying on the Surface Tension of Liquid Iron and Steel Alloys (this opens in a new tab)”, Int. J. Thermophys. 41:56 (2020)
  6. Polikhronidi, NG; Batyrova, RG; Wu, JT; Abdulagatov, IM, “PVT and Thermal-Pressure Coefficient Measurements and Derived Thermodynamic Properties of 2-Propanol in the Critical and Supercritical Regions (this opens in a new tab)”, Int. J. Thermophys. 41:92 (2020)
  7. Jannot, Y; Meulemans, J; Schick, V; Capp, M; Bargain, I,A,  “Comparative Fluxmetric (CFM) Method for Apparent Thermal Conductivity Measurement of Insulating Materials at High Temperature (this opens in a new tab)”, Int. J. Thermophys. 41:94 (2020)
  8. Piszko, M; Giraudet, C; Froba, AP, “Diffusivities of an Equimolar Methane-Propane Mixture Across the Two-Phase Region by Dynamic Light Scattering (this opens in a new tab)”, Int. J. Thermophys. 41:102 (2020)
  9. Perkins, RA; Huber, ML, “Measurement and Correlation of the Thermal Conductivity of cis-1,1,1,4,4,4-hexafluoro-2-butene (this opens in a new tab)”, Int. J. Thermophys. 41:103 (2020)
  10. Pan, CZ; Chen, H; Han, DX; Zhang, HY; Plimmer, M; Imbraguglio, D; Luo, EC; Gao, B; Pitre, L, “Numerical and Experimental Study of the Hydrostatic Pressure Correction in Gas Thermometry: A Case in the SPRIGT (this opens in a new tab)”, Int. J. Thermophys.  41:108 (2020)
  11. Bazile, JP; Nasri, D; Hoang, H; Galliero, G; Daridon, JL,”Density, Speed of Sound, Compressibility and Related Excess Properties of Methane plus n-Heptane at T=303.15 K and p=10 to 70 MPa (this opens in a new tab)”, Int. J. Thermophys.  41:115 (2020)
  12. Taib, MBM; Trusler, JPM, “Diffusion Coefficients of Methane in Methylbenzene and Heptane at Temperatures between 323 K and 398 K at Pressures up to 65 MPa (this opens in a new tab)”, Int. J. Thermophys.  41:119 (2020)
  13. Kagata, K; Kageyama, K; Kinoshita, S; Yoshida, A, “Evaluation of Thermal Contact Resistance Between Two Solid Surfaces Using Photoacoustic Technique (this opens in a new tab)”, Int. J. Thermophys.  41:131 (2020)
  14. Koller, TM; Lenahan, FD; Schmidt, PS; Klein, T; Mehler, J; Maier, F; Rausch, MH; Wasserscheid, P; Steinruck, HP; Froba, AP, “Surface Tension and Viscosity of Binary Mixtures of the Fluorinated and Non-fluorinated Ionic Liquids [PFBMIm][PF6] and [C(4)C(1)Im][PF6] by the Pendant Drop Method and Surface Light Scattering (this opens in a new tab)”, Int. J. Thermophys.  41:144 (2020)
  15. Chen, CY; Yang, CY; Ranjan, D; Loutzenhiser, PG; Zhang, ZMM, “Spectral Radiative Properties of Ceramic Particles for Concentrated Solar Thermal Energy Storage Applications (this opens in a new tab)”, Int. J. Thermophys.  41:152 (2020)
  16. Eckmann, P; von Preetzmann, N; Cavuoto, G; Li, JR; van der Veen, A; Kleinrahm, R; Richter, M, “Density Measurements of (0.99 Methane+0.01 Butane) and (0.98 Methane+0.02 Isopentane) over the Temperature Range from (100 to 160) K at Pressures up to 10.8 MPa (this opens in a new tab)”, Int. J. Thermophys.  41:156 (2020)


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