AGA 8 PART 2-2017 Thermodynamic Properties of Natural Gas and Related Gases GERG C2008 Equation of State (First Edition XQ1704-2).pdf
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1、 AGA Report No. 8 Thermodynamic Properties of Natural Gas and Related Gases GERG2008 Equation of State First Edition April 2017 Prepared by Transmission Measurement Committee Part 2 AGA Report No. 8 Part 2 Thermodynamic Properties of Natural Gas and Related Gases GERG2008 Equation of State Prepared
2、by Transmission Measurement Committee First Edition April 2017 Copyright 2017 American Gas Association All Rights Reserved Catalog No. XQ1704-2 ii iii DISCLAIMER AND COPYRIGHT The American Gas Associations (AGA) Operations and Engineering Section provides a forum for industry experts to bring their
3、collective knowledge together to improve the state of the art in the areas of operating, engineering and technological aspects of producing, gathering, transporting, storing, distributing, measuring and utilizing natural gas. Through its publications, of which this is one, AGA provides for the excha
4、nge of information within the natural gas industry and scientific, trade and governmental organizations. Many AGA publications are prepared or sponsored by an AGA Operations and Engineering Section technical committee. While AGA may administer the process, neither AGA nor the technical committee ind
5、ependently tests, evaluates or verifies the accuracy of any information or the soundness of any judgments contained therein. AGA disclaims liability for any personal injury, property or other damages of any nature whatsoever, whether special, indirect, consequential or compensatory, directly or indi
6、rectly resulting from the publication, use of or reliance on AGA publications. AGA makes no guaranty or warranty as to the accuracy and completeness of any information published therein. The information contained therein is provided on an “as is” basis and AGA makes no representations or warranties
7、including any expressed or implied warranty of merchantability or fitness for a particular purpose. Nothing contained in this document should be viewed as an endorsement or disapproval of any particular manufacturer or product. In issuing and making this document available, AGA is not undertaking to
8、 render professional or other services for or on behalf of any person or entity. Nor is AGA undertaking to perform any duty owed by any person or entity to someone else. Anyone using this document should rely on his or her own independent judgment or, as appropriate, seek the advice of a competent p
9、rofessional in determining the exercise of reasonable care in any given circumstances. AGA has no power, nor does it undertake, to police or enforce compliance with the contents of this document. Nor does AGA list, certify, test or inspect products, designs or installations for compliance with this
10、document. Any certification or other statement of compliance is solely the responsibility of the certifier or maker of the statement. AGA does not take any position with respect to the validity of any patent rights asserted in connection with any items that are mentioned in or are the subject of AGA
11、 publications, and AGA disclaims liability for the infringement of any patent resulting from the use of or reliance on its publications. Users of these publications are expressly advised that determination of the validity of any such patent rights, and the risk of infringement of such rights, is ent
12、irely their own responsibility. Users of this publication should consult applicable federal, state and local laws and regulations. AGA does not, through its publications, intend to urge action that is not in compliance with applicable laws, and its publications may not be construed as doing so. Info
13、rmation concerning safety risks, proper installation or use, performance or fitness or suitability for any purpose with respect to particular products or materials should be obtained from the manufacturer or supplier of the material used. Changes to this document may become necessary from time to ti
14、me. If changes are believed appropriate by any person or entity, such suggested changes should be communicated to AGA in writing and sent to: Operations full name of the document; suggested revisions to the text of the document; the rationale for the suggested revisions; and permission to use the su
15、ggested revisions in an amended publication of the document. Copyright 2017, American Gas Association, All Rights Reserved. iv FOREWORD AGA Report No. 8, Part 2, provides technical information necessary to compute thermodynamic properties including compressibility factors, densities, speeds of sound
16、, and dew and bubble points for natural gas and related gases. It is based on the research performed at the Ruhr University in Bochum, Germany, and published in 2006 as the doctoral dissertation of Oliver Kunz under the direction of Prof. Dr.-Ing. Wolfgang Wagner. The equations in the dissertation a
17、re commonly referred to as the GERG-2004 and GERG-2008 equations of state in acknowledgement of partial sponsorship of the research by the Groupe Europeen de Recherches Gazieres (GERG). Because these equations are used both in this document and the International Standards Organization document ISO 2
18、0765: Natural Gas Calculation of Thermodynamic Properties, Part 2: Single-Phase Properties (Gas, Liquid, and Dense Fluid) for Extended Ranges of Application, 2015 edition, calculations of properties should have the same values. The companion publication, AGA Report No. 8, Part 1, provides calculatio
19、n methods for the DETAIL and GROSS equations of state as in the 1994 edition of AGA Report No. 8, but the temperature, pressure, and composition limits for different levels of uncertainties have been modified. The documentation of programs for calculating properties from the methods described in thi
20、s document is available as supplementary material in Appendix C. Examples are available in Fortran, VB, and C+ code. The supplementary material also contains a Microsoft Excel spreadsheet for property calculations. This can be used to determine if, for a particular temperature, pressure, and composi
21、tion, the property values calculated from the equations in Part 1 are within the desired uncertainty (by comparing with those in Part 2) even though one or more of these inputs may be outside the ranges given in Part 1. A file containing calculated points at different compositions (not necessarily r
22、elated to typical natural gas) is included, which can be used to verify that programs or equipment have been implemented or upgraded correctly to produce values that are in agreement with the equations in this document. Some material described in Part 2 also applies to Part 1, and vice versa, and is
23、 not repeated in both parts. For example, Part 1 describes an algorithm for obtaining densities through an iterative procedure that can also be used with the equations in Part 2 (and which is applied for this purpose to the GROSS, DETAIL, and GERG-2008 equations of state in the programs in the suppl
24、ementary material). Similarly, Part 2 outlines the method for reporting calculated results and uncertainties from the equations in both parts, and also describes the experimental database available for natural gas mixtures (both binary and multicomponent systems), much of which was used in the devel
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