API MPMS 11.2-1984 Manual of Petroleum Measurement Standards Chapter 11.2.1 and 11.2.1M - Compressibility Factors for Hydrocarbons 0-90 Degrees API Gravity and 638-1074 Kilograms p.pdf
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1、Manual of Petroleum Measurement Standards Chapter 11.2.1 and 11.2.1 M-Compressibility Factors for Hydrocarbons: 0-90“ API Gravity and 638-1074 Kilograms per Cubic Metre Ranges of Provers Chapter 11.2.3 and 11.2.3M-Water Calibration Computer Tape Information and Documentation FIRST EDITION, AUGUST 19
2、84 American Petroleum Institute Helping You Get The Job Done R-Y Manual of Petroleum Measurement Standards Chapter 11.2.1 and 11.2.1 M-Compressibility. Factors for Hydrocarbons: 0-90API Gravity and 638-1074 Kilograms per Cubic Metre Ranges of Provers Chapter 11.2.3 and 11.2.3M-Water Calibration Comp
3、uter Tape Information and Documentation Measurement Coordination Department FIRST EDITION, AUGUST 1984 American Petroleum Institute Nothing contained in any API publication is to be construed as granting any right, by implicating or otherwise, for the manufacture, sale, or use in connection with any
4、 method, apparatus, or product covered by letters patent nor as indemnifying any- one from or against any liability for infringement of letters patent. This publication may be used by anyone desiring to do so. The Institute hereby expressly disclaims any liability or responsibility for loss or damag
5、e resulting from its use; for the violation of any federal, state, or municipal regulation with which an API publication may conflict; or for the infringement of any patent resulting from the use of an API publication. Every effort has been made by the Institute to assure the accuracy and reliabilit
6、y of the data presented. Copyright Q 1984 American Petroleum Institute This publication and computer tape provide tables to correct hydrocarbon vol- umes metered under pressure to corresponding volumes at the equilibrium pressure for the metered temperature and to calibrate volumetric provers. Table
7、s are pro- vided in customary and metric (SI) units. Suggested revisions are invited and should be submitted to the director, Mea- surement Coordination Department, American Petroleum Institute, 1220 L Street, N.W., Washington, D.C. 20005. iii MEMBERS OF THE COMMITTEE ON STATIC PETROLEUM MEASUREMENT
8、 WORKING GROUP ON COMPRESSIBILITY F. P. Gielzecki (Retired) Imperial Oil, Ltd. R. A. Griffith (Chairman) Getty Trading and Transportation Company J. A. Hamshar Cities Service Oil and Gas Corporation K. T. Liu, Ph.D. Gulf Research and Development Company M. A. Plumer, Ph.D. Marathon Oil Company J. Po
9、lowek Interprovincial Pipe Line Ltd. G. W. Singletary Texas Eastern Transmission Company G. W. Swinney (Retired) Phillips Petroleum Company iv CONTENTS Page COMPUTER TAPE INFORMATION . vii CHAPTER 11.2. 14OMPRESSIBILITY FACTORS FOR HYDROCARBONS: O-90“API GRAVITY RANGE 11.2.1.1 scope . 1 11.2.1.2 His
10、tory and Development 1 11.2.1.3 Data Base and Limits of the Standard . 1 11.2.1.4 Example Use of the Standard 1 11.2.1.5 Mathematical Model for the Standard . 3 11.2.1.5.1 Basic Model and Uncertainty Analysis . 3 11.2.1 S.2 Calculation Procedure . 3 11.2.1.6 References . 4 Text Tables 1-Data Base an
11、d Experimental Conditions for Chapter 11.2.1. 2 3 2-Volumetric Uncertainty Analysis for Chapter 11.2.1. . Figure l-Comparison of Data Base and Extrapolated Regions for Chapter 11.2.1 2 CHAPTER 11.2. lM-COMPRESSIBILITY FACTORS FOR HYDROCARBONS: CUBIC METRE RANGE 638-1074 KILOGRAMS PER 11.2.1.1M Scope
12、 . 4 11.2.1.2M History and Development 4 11.2.1.3M Data Base and Limits of the Standard . 4 11.2.1.4M Example Use of the Standard 5 11.2.1.5M Mathematical Model for the Standard . 5 11.2.1.5.1M Basic Model and Uncertainty Analysis . 5 11.2.1.5.2M Calculation Procedure . 7 11.2.1.6M References . 7 Te
13、xt Tables l-Data Base and Experimental Conditions for Chapter 11.2.1M . 6 7 2-Volumetric Uncertainty Analysis for Chapter 11.2.1M. . Figure l-lomparison of Data Base and Extrapolated Regions for Chapter 11.2.1M 6 CHAPTER 11.2.3-WATER CALIBRATION OF 11.2.3.1 Scope . 8 8 8 VOLUMETRIC PROVERS 11.2.3.2
14、History and Development 11.2.3.3 Type and Limits of the Standard V 11.2.3.4 Example Use of the Standard 8 11.2.3.5 Mathematical Model for the Standard . 9 11.2.3.6 Uncertainty Analysis 9 11.2.3.7 References . 9 CHAPTER 11.2.3M-WATER CALIBRATION OF VOLUMETRIC PROVERS 11.2.3.1M Scope . 9 11.2.3.2M His
15、tory and Development 9 11.2.3.3M Type and Limits of the Standard 9 11.2.3.4M Example Use of the Standard 10 11.2.3.5M Mathematical Model for the Standard . . 10 11.2.3.6M Uncertainty Analysis 10 11.2.3.W References . 10 vi COMPUTER TAPE INFORMATION The two computer tapes (ASCII or EBCDIC) contain th
16、e following tables in the order indicated. File No. 1 Chapter 11.2.1-Table of Compressibility Factors for Hydrocarbons in the O-9“ApI Gravity Range Related to API Gravity (60F) and Metering Tem- perature (Degrees Fahrenheit) File No. 2 Chapter 11.2.1M-Table of Compressibility Factors for Hydrocarbon
17、s in the 638-1074 Kilograms per Cubic Metre Range Related to Density (15C) and Metering Temperature (Degrees Celsius) File No. 3 Chapter 11.2.3-Table of Volume Correction Factors for Use in Water Calibration of Provers (Degrees Fahrenheit) File No. 4 Chapter 11.2.3M-Table of Volume Correction Factor
18、s for Use in Water Calibra- tion of Provers (Degrees Celsius) AU four tables are contained in four files on the tape. The tape is provided in one of two formats with the composite file in EBCDIC characters or ASCII characters. The information needed to transfer the tape to your computer is as follow
19、s: Tape contents API tables BPI 1600 bits per inch Unlabeled Yes Characters ASCII or EBCDIC Record 132 characters Blocking 26400 characters (20 records) Files 4 vii Chapter 1 1-Physical Properties Data SECTION 2-VOLUME CORRECTION FACTORS FOR METER PROVING AND HYDROCARBON COMPRESSIBILITY FACTORS 11.2
20、.1 Compressibility Factors for Hydrocarbons: 0-90“API Gravity Range 11.2.1.1 SCOPE The purpose of this standard is to correct hydro- carbon volumes metered under pressure to the corre- sponding volumes at the equilibrium pressure for the metered temperature. This standard contains compres- sibility
21、factors related to meter temperature and MI gravity (60F) of metered material. The corresponding metric version is Chapter 11.2.1M. 11.2.1.2 HISTORY AND DEVELOPMENT The previous compressibility standard (API Standard 1101, Appendix B, Table 11) for hydrocarbons in the O-9“API gravity range was devel
22、oped in 1945 by Jacobson, et ai i. It is based on limited data obtained mostly on pure compounds and lubricating oil type ma- terials. Also, Standard 1101 was developed without the aid of a mathematical model. In 1981, a working group of the Committee on Static Petroleum Measurement was set up to re
23、vise the com- pressibility tables of Standard 1101. This group per- formed an extensive literature search and found only three sources of compressibility information. The re- sulting data base is broader than that used in the pre- vious standard. Unfortunately, it is not large enough to cover the ra
24、nge of current commercial operations. When new data are available, they will be incorporated into an expanded standard. This standard now replaces the discontinued Standard 1101, Appendix B, Table II, O-1oO“API gravity portion. 11.2.1.3 DATA BASE AND LIMITS OF THE STANDARD The actual standard is the
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