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Joule-Thomson coefficients of hydrogen and methane mixturesRANDELMAN, R. E; WENZEL, L. A.Journal of chemical and engineering data (Print). 1988, Vol 33, Num 3, pp 293-299, issn 0021-9568Article

Characterization of a two-stage 30 K Joule―Thomson microcoolerCAO, H. S; HOLLAND, H. J; VERMEER, C. H et al.Journal of micromechanics and microengineering (Print). 2013, Vol 23, Num 6, issn 0960-1317, 065022.1-065022.7Article

Prediction of Joule-Thomson inversion curves from Van der Waals type equations of stateMAGHARI, A; MATIN, N. S.Journal of chemical engineering of Japan. 1997, Vol 30, Num 3, pp 520-525, issn 0021-9592Article

A flow calorimeter for the measurement of the isothermal Joule-Thomson coefficient of gases at elevated temperatures and pressures: results for nitrogen at temperatures up to 473 K and pressures up to 10 MPa and for carbon dioxide at temperatures up to 500 K and pressures up to 5 MPaCUSCO, L; MCBAIN, S. E; SAVILLE, G et al.Journal of chemical thermodynamics. 1995, Vol 27, Num 7, pp 721-733, issn 0021-9614Article

High-temperature behaviour of the cohesion parameter of cubic equations of stateCOLINA, C. M; SANTOS, J. W; OLIVERA-FUENTES, C et al.High Temperatures. High Pressures (Print). 1997, Vol 29, Num 5, pp 525-532, issn 0018-1544Conference Paper

Calculate physical properties for real gasesBARRY, J.Chemical engineering (New York, NY). 1999, Vol 106, Num 4, pp 110-114, issn 0009-2460Article

Three-parameter corresponding-states correlations for joule-thomson inversion curvesCASTILLO, M. G; COLINA, C. M; DUBUC, J. E et al.International journal of thermophysics. 1999, Vol 20, Num 6, pp 1737-1751, issn 0195-928XConference Paper

Heating effects in the deformation of thermoplasticsHAWARD, R. N.Thermochimica acta. 1994, Vol 247, Num 1, pp 87-109, issn 0040-6031Article

A flow calorimeter for the measurement of the heat capacities and Joule-Thomson coefficients of condensable vapoursFRANCIS, P. G.Journal of chemical thermodynamics. 1990, Vol 22, Num 6, pp 545-556, issn 0021-9614, 12 p.Article

Prediction of the inversion curve and the maximum value of μJ-T for some refrigerantsKESHAVARZI, E; PARSAFAR, G; NAJAFI, B et al.International journal of thermophysics. 1999, Vol 20, Num 2, pp 651-663, issn 0195-928XArticle

Experimental investigation of near-critical CO2 tube-flow and Joule-Thompson throttling for carbon capture and sequestrationKAZEMIFAR, Farzan; KYRITSIS, Dimitrios C.Experimental thermal and fluid science. 2014, Vol 53, pp 161-170, issn 0894-1777, 10 p.Article

Joule-Thomson-Koeffizienten für in der Bundesrepublik Deutschland vermarktete Erdgase = Joule-Thomson coefficients for natural gases marketed in the Federal Republic of GermanyFASOLD, H.-G; WAHLE, H.-N.Gas- und Wasserfach. Gas - Erdgas. 1994, Vol 135, Num 4, pp 212-219, issn 0016-4909Article

Evaluation of the parameters of the Bender equation of state for low acentric factor fluids and carbon dioxideGHAZOUANI, J; CHOUAIEB, O; BELLAGI, A et al.Thermochimica acta. 2005, Vol 432, Num 1, pp 10-19, issn 0040-6031, 10 p.Article

Heat capacities and Joule-Thomson coefficients of HFC refrigerantsYOKOZEKI, A; SATO, H; WATANABE, K et al.International journal of thermophysics. 1999, Vol 20, Num 1, pp 141-148, issn 0195-928XConference Paper

Isobaric enthalpy increment and isenthalpic Joule-Thomson effect measurements on synthetic gas containing binary, or ternary mixtures of methane, ethane, propane, and nitrogenGRINI, P. G; OWREN, G. A; MAEHLUM, H et al.Journal of chemical thermodynamics. 1998, Vol 30, Num 8, pp 1011-1027, issn 0021-9614Article

A comparison between four cubic equations of state in predicting the inversion curve and spinodal curve loci of methaneDARWISH, N. A; AL-MUHTASEB, S. A.Thermochimica acta. 1996, Vol 287, Num 1, pp 43-52, issn 0040-6031Article

A unified model for predicting flowing temperature distribution in wellbores and pipelinesALVES, I. N; ALHANATI, F. J. S; SHOHAM, O et al.SPE production engineering. 1992, Vol 7, Num 4, pp 363-367, issn 0885-9221Conference Paper

Drosselkalorimetrische Untersuchung der Kältemittel Tetrafluordichlorethan (R114) und Difluorchlormethan (R22). I = Etude, par calorimètre à étranglement, des fluides frigorigènes R114 (tétrafluorodichloréthane) et R22 (monochlorodifluorométhane). Première partie = Experimental study of the refrigerants R114 et R22 using a throttling calorimeterGUNTHER, R; STEPHAN, K.Klima, Kälte, Heizung. 1989, Vol 17, Num 5, pp 242-244, issn 0172-1984Article

Virial coefficients and inversion curve of simple and associating fluidsNARESH, D. J; SINGH, Jayant K.Fluid phase equilibria. 2009, Vol 279, Num 1, pp 47-55, issn 0378-3812, 9 p.Article

Joule-Thomson inversion curves of mixtures by molecular simulation in comparison to advanced equations of state : Natural gas as an exampleVRABEC, Jadran; KUMAR, Ashish; HASSE, Hans et al.Fluid phase equilibria. 2007, Vol 258, Num 1, pp 34-40, issn 0378-3812, 7 p.Article

Working with fluids that warm upon expansionCARROLL, J. J.Chemical engineering (New York, NY). 1999, Vol 106, Num 10, pp 108-114, issn 0009-2460, 5 p.Article

Mixing behaviour of a mixture of equal amounts of substance of 1,1,1,2-tetrafluoroethane and 1,1-difluoroethane. I. Results of calorimetric measurementsTÜRK, M; CRONE, M; BIER, K et al.Journal of chemical thermodynamics. 1996, Vol 28, Num 10, pp 1179-1194, issn 0021-9614Article

Drosselkalorimetrische Untersuchung der Kältemittel Tetrafluordichlorethan (R114) und Difluorchlormethan (R22). II = Etude par calorimétrie à étranglement des fluides frigorigènes tetrafluorodichloréthane (R114) et difluochlorométhane (R22). (2ème partie) = Experimental study of the refrigerants tetrafluorodichloromethan (R114) et difluorochloromethan (R22) using a throttling calorimeter. (2nd part)GUNTHER, R; STEPHAN, K.Klima, Kälte, Heizung. 1989, Vol 17, Num 6, pp 292-296, issn 0172-1984Article

New method for deriving accurate thermodynamic properties from speed-of-soundESTRADA-ALEXANDERS, Andrés F; JUSTO, Daimler.Journal of chemical thermodynamics. 2004, Vol 36, Num 5, pp 419-429, issn 0021-9614, 11 p.Article

Flow-calorimetric results for the massic heat capacity cp and the Joule-Thomson coefficient of CH4, of (0.85 CH4 + 0.15 C2H6), and of a mixture similar to natural gasERNST, G; KEIL, B; WIRBSER, H et al.Journal of chemical thermodynamics. 2001, Vol 33, Num 6, pp 601-613, issn 0021-9614Article

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