GPA RR-138-1995 Thermodynamic Properties of CO2 + CH4 Mixtures (NOT FOR SALE ONLINE - Send Customer Direct to GPAGLOBAL ORG)《CO2+CH4混合物的热力学特性》.pdf
《GPA RR-138-1995 Thermodynamic Properties of CO2 + CH4 Mixtures (NOT FOR SALE ONLINE - Send Customer Direct to GPAGLOBAL ORG)《CO2+CH4混合物的热力学特性》.pdf》由会员分享,可在线阅读,更多相关《GPA RR-138-1995 Thermodynamic Properties of CO2 + CH4 Mixtures (NOT FOR SALE ONLINE - Send Customer Direct to GPAGLOBAL ORG)《CO2+CH4混合物的热力学特性》.pdf(40页珍藏版)》请在麦多课文档分享上搜索。
1、GPA RR-338 95 m 382qb99 0037623 bhO CY1 Research Report -138 Thermodynamic Properties of CO2 + CH4 Mixtures A Joint Research Report by the Gas Processors Association and the Gas Research Institute Project 842 GRI Contract No. 5087-260-1449 C-A. Hwang H. Duarte-Garza P. T. Eubank J. C. Holste K. R. H
2、all Texas A and for the infringement of any patent or the violation of any federal, state or municipal law or regulation arising from the use of any information, apparatus, method or process disclosed in this report. GRI DISCLAIMER LEGAL NOTICE: This report was prepared by the Texas A or 2. Assumes
3、any liability with respect to the use of, or for damages resulting from the use of, any information, apparatus, method or process disclosed in this report. . 111 Copyright Gas Processors Association Provided by IHS under license with GPANot for ResaleNo reproduction or networking permitted without l
4、icense from IHS-,-RESEARCH SUMMARY Title Contractor Texas A! + CH4 mixtures. For each mixture, the Burnett measurements are at 300 and 320 K up to 10 MPa while the pycnometer measurements range from 225 to 350 K (in 25 K increments) up to 35 MPa. The accuracies of the densities are better than 0.1%
5、and are discussed in detail in the report. Energies and entropies derived from P-V-T measurements are about the same order of accuracy as calorimetric measurements (estimated uncertainties about 2x experimental). The properties reported here are: densities, virial coefficients (second, third and cro
6、ss), energies, enthalpies and entropies. The report contains approximately 400 measurements and 800 derived values. Because the number of laboratories capable of measuring fluid properties accurately over extended ranges of temperature and pressure Ras diminished dramatically over the past two decad
7、es, we have adopted the approach of constructing several apparatus capable of rapid, automated measurements. The ranges of the various apparatus overlap to assure internal consistency. Primary measurements agree within 0.1% for these apparatus. We use a Burnett apparatus, a Burnett-isochoric apparat
8、us, a continuously weighed pycnometer, two isochoric apparatus and a flow calorimeter to measure fluid ensities, energies, enthalpies, entropies and phase equilibria. The results from these apparatus are sufficiently accurate and precise to permit stringent testing and development of equations of st
9、ate and predictive correlations. iv Copyright Gas Processors Association Provided by IHS under license with GPANot for ResaleNo reproduction or networking permitted without license from IHS-,- GPA RR-Jn38 95 3824699 0017628 142 FOREWORD Production, processing, and transmission of carbon dioxide-rich
10、 streams for use in enhanced oil recovery require detailed knowledge of high pressure thermal properties. Enthalpies are needed for compressor design, exchanger and cooler design, and for simulation of high temperature and pressure profiles in carbon dioxide wells. Near-critical fluids show large ch
11、anges in thermodynamic properties in response to small variations in temperature, pressure and trace impurities. In many of the proposed applications of carbon dioxide, the fluid will be at near-critical or super-critical conditions. Project 842 has been designed to develop a reliable thermal proper
12、ties data bank. High accuracy experimental thermal properties have been collected for carbon dioxide-rich mixtures containing small quantities of nitrogen, hydrogen sulfide, and light hydrocarbons, e.g., methane and ethane. This particular report presents the results for mixtures of carbon dioxide a
13、nd methane. Experimental measurements of densities for mixtures of carbon dioxide and methane over a wide range of temperature and pressures are collected using four different experimental techniques. Other properties are evaluated using standard thermodynamic procedures. This report presents data f
14、or virial coefficients, energies, enthalpies and entropies. This project has been funded as a joint venture between GRI and GPA. Arild Wilson Chairman GPA Enthalpy Steering Committee V Lyman Yarborough Chairman Technical Section F Technical Data Development Jeff Savidge Project Manager Gas Research
15、Institute V Copyright Gas Processors Association Provided by IHS under license with GPANot for ResaleNo reproduction or networking permitted without license from IHS-,-TABLE OF CONTENTS REPORT DOCUMENTATION PAGE i1 GPA DISCLAIMER 111 GRI DISCLAIMER . 111 . . RESEARCH SUMMARY . iv FOREWORD v LIST OF
16、TABLES v11 . LIST OF FIGURES . vili INTRODUCTION 1 RESULTS AND CONCLUSIONS . 1 DISCUSSION OF RESULTS . 2 EXPERIMENTAL DETAILS 5 Burnett Apparatus . 5 Pycnometer 5 EXPERIMENTAL UNCERTAINTY . 6 REFERENCES 7 APPENDIX . Nomenclature . 8 vi Copyright Gas Processors Association Provided by IHS under licen
17、se with GPANot for ResaleNo reproduction or networking permitted without license from IHS-,-Table I . II.1 . 11.2 . III . IV- 1 . IV.2 . Iv.3 . IV.4 . v.1 . v.2 . v.3 . v.4 . VI . VI1 . VI11 . LIST OF TABLES Page Experimental P-V-T values for CO2 + CH4 mixtures (Burnett apparatus) 9 Derived second a
18、nd third virial coefficients for CO2 + CH4 mixtures . 10 Derived cross virial coefficients for CO2 + CH, 10 Experimental P-V-T values for CO2 + CH, mixtures (pycnometer) . 11 Pressure residual properties and correction terms for 9.83 mol % CO2 + 90.17 mol % CH4 13 Pressure residual properties and co
19、rrection terms for 29.1 1 mol % CO2 + 70.89 mol % CH, 15 Pressure residual properties and correction terms for 66.82 mol % CO2 + 33.18 mol % CH4 17 Pressure residual properties and correction terms for 90.11 mol % CO2 + 9.89 mol % CH, . 19 Total properties for 9.83 mol % CO, + 90.17 mol % CH, . 21 T
20、otal properties for 29.1 1 mol % CO, + 70.89 mol % CH, 23 Total properties for 66.82 mol % CO2 + 33.18 mol % CH4 . 25 Total properties for 90.1 1 mol % CO2+ 9.89 mol % CH, 27 Physical constants. conversion factors. and molecular weights 29 Enthalpies and entropies for CO2 and CH4 in the ideal gas st
21、ate . 30 Parameters for 6Z vs p fitting equation for CO2 + CH, 30 LIST OF FIGURES Figure 1 . Schematic diagram of Burnett apparatus 31 Figure 2 . Schematic diagram of pycnometer 32 vii Copyright Gas Processors Association Provided by IHS under license with GPANot for ResaleNo reproduction or network
22、ing permitted without license from IHS-,- ! (1984) and CH4 (198 1) comprise Table VII. Finally, Table VI11 lists the parameter values for the model correction term, 6z. The measurements in this project are state of the art and generally accurate within 0.1%. This information is suitable for both str
23、ingent testing and development of models and correlations. In fact, these data formed a significant contribution to the development of AGA-8. The data extension technique developed in this project can be extended to other models and form a general correction term for any equation of state. With this
24、 correction, the equations are nearly as accurate in the near critical regions as they are in any other region. 1 Copyright Gas Processors Association Provided by IHS under license with GPANot for ResaleNo reproduction or networking permitted without license from IHS-,-DISCUSSION OF RESULTS The data
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