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US$689.00 · In stock Delivery: <= 5 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 17747.3-2011: Natural gas -- Calculation of compression factor -- Part 3: Calculation using physical properties Status: Valid GB/T 17747.3: Evolution and historical versions
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Natural gas -- Calculation of compression factor -- Part 3: Calculation using physical properties
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GB/T 17747.3-2011
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| GB/T 17747.3-1999 | English | 959 |
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Natural gas--Calculation of compression factor--Part 3: Calculation using physical properties
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GB/T 17747.3-1999
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PDF similar to GB/T 17747.3-2011
Basic data | Standard ID | GB/T 17747.3-2011 (GB/T17747.3-2011) | | Description (Translated English) | Natural gas -- Calculation of compression factor -- Part 3: Calculation using physical properties | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | E24 | | Classification of International Standard | 75.060 | | Word Count Estimation | 30,356 | | Date of Issue | 2011-12-05 | | Date of Implementation | 2012-05-01 | | Older Standard (superseded by this standard) | GB/T 17747.3-1999 | | Quoted Standard | GB 3102.3-1993; GB 3102.4-1993; GB/T 11060-1998; GB/T 17747.1-2011; GB/T 17747.2-2011 | | Adopted Standard | ISO 12213-3-2006, MOD | | Regulation (derived from) | Announcement of Newly Approved National Standards No. 19 of 2011 | | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China | | Summary | This standard specifies the gas containing artificial blends a mixture of natural gas and other similar state exists only when the gas compressibility factor calculation methods. This calculation method is to use known high heat, relative density and carbon dioxide content and the corresponding pressure and temperature of gas and the compression factor. If hydrogen is present, also need to know the content of the blend containing artificial gas is often the case. |
GB/T 17747.3-2011: Natural gas -- Calculation of compression factor -- Part 3: Calculation using physical properties ---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
. Natural gas Calculation of compression factor Part 3. Calculation using physical properties
ICS 75.060
E24
National Standards of People's Republic of China
Replacing GB/T 17747.3-1999
Calculation of compression factor of natural gas
Part 3. Calculation using physical properties
Part 3. Calculationusingphysicalproperties
(ISO 12213-3.2006, MOD)
Issued on. 2011-12-05
2012-05-01 implementation
Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
Standardization Administration of China released
Table of Contents
Preface Ⅰ
1 Scope 1
2 Normative references 1
3 Terms and definitions
4 Calculation Method 1
Appendix A (normative) Symbols and units 6
Appendix B (Normative Appendix) SGERG-88 calculation method described 9
Annex C (normative) Calculation Example 17
Annex D (normative) Conversion factor 18
Appendix E (normative) Specification gas pipe 21
Annex F (informative) effect wider range of applications 24
Foreword
GB/T 17747 "Gas Calculation of compression factor" criteria include the following three parts.
--- Part 1. Introduction and guidelines;
--- Part 2. The calculation of molar composition;
--- Part 3. Calculation using physical properties.
This section is part 3.
This section drafted in accordance with GB/T 1.1-2009 given rules.
This Part replaces GB/T 17747.3-1999 "gas - Calculation of compression factor - Part 3. Calculation using physical properties."
This section compared with the GB/T 17747.3-1999 The main changes are as follows.
--- 4.4.1 "Natural gas molar fraction of other components not as input data. However, they must be within the following ranges."
After "(with a continuous series of paraffins molar fraction ratio is generally 3.1, see Appendix E)";
--- 4.5.2 will be "beyond the scope of temperament 4.5.1 gives gas compressibility factor calculation of expected uncertainty in Appendix E" to
"Out of scope 4.5.1 temperament given expected gas compression factor calculation Uncertainty Appendix F";
--- Remove the text "±" number of Uncertainty value before;
--- Increase in Appendix E "gas pipe specifications";
--- Modify the diagram symbols and legend.
The partial modification of the use of ISO 12213-3.2006 "gas - Calculation of compression factor - Part 3. Calculation using physical properties."
This part of ISO 12213-3.2006 The main differences are.
--- Chapter 2 normative references, and some apply to international standard formulation modified to apply to our standard formulation, ISO
Replace the standard content of the corresponding national standards, the remaining chapters corresponding to the content is modified accordingly;
--- 4.4.1 and 4.4.2 will be increased by high heat and relative density of natural gas under the terms of the standard reference conditions corresponding values
Note;
--- Remove the body "±" number of Uncertainty value before;
--- Delete the contents of Chapter 5;
--- Remove Appendix B other execution;
--- B.1.1 input variables pressure and temperature units replaced by a bar and ℃ MPa and K;
--- Table D.1 increase in China's heat was determined by reference conditions;
--- The D.2 pressure and temperature unit ℃ and bar to MPa and K, Table D.2 conversion formula can also be modified accordingly and
Table D.2 increase conversion formula under our standard reference conditions;
--- Remove Appendix G and references.
This part of the National Gas Standardization Technical Committee (SAC/TC244) centralized.
This section drafted by. China Southwest Oil and Gas Field Branch Gas Research Institute of Petroleum.
The main drafters of this section. Luo Qin, Xuwen Xiao, Zhoufang Qin, Huang Liming, Chang Hong Kong, Chen Geng Liang, Liwan Jun, Zeng Ping, Fu Chiu Ying,
Chenrong Song, Qiufeng Chun.
Calculation of compression factor of natural gas
Part 3. Calculation using physical properties
1 Scope
This section GB/T 17747 provides for natural gas, including labor and other similar blend a mixture of gaseous state only memory
When the compression factor calculation method. This calculation method is to use known high calorific value, relative density and CO2 content and the corresponding pressure and
Temperature gas compressibility factor calculation. If the presence of H2, also need to know its content, this is often the case in a gas containing artificial blend in.
Note. Given the high calorific value, relative density, CO2 content and N2 content of any of the three variables, you can calculate the compression factor. But N2 content as input
Calculation Method for the variable one is not recommended as a method is generally used to calculate the first three variables as input variables.
This calculation method is also known as SGERG-88 calculation method is mainly used in the pressure P and temperature Gas Transmission and Distribution normal range of T
Gas pipe circumference within the uncertainty of about 0.1%. It can also be used in a wider range, but the results will increase the uncertainty (see Appendix F).
About the scope of application of the calculation methods and applications described in more detail, see GB/T 17747.1.
2 Normative references
The following documents for the application of this document is essential, dated references, only the dated version suitable for use herein
Member. For undated references, the latest edition (including any amendments) applies to this document.
GB 3102.3-1993 Quantities and units of mechanics
Quantities and units of GB 3102.4-1993 Thermal
GB/T 11062-1998 natural gas calorific value, density, relative density and Wobbe index calculation method (neqISO 6976.1995)
GB/T 17747.1-2011 Gas Calculation of compression factor - Part 1. Introduction and guidelines (ISO 12213-1.2006,
MOD)
GB/T 17747.2-2011 gas - Calculation of compression factor - Part 2. molar composition analysis (ISO 12213-2.
2006, MOD)
3 Terms and Definitions
Terms and definitions GB/T 17747.1 given apply to this document. Meaning and unit symbol appears in the text represented see
Appendix A.
4 Calculation
4.1 Principle
SGERG-88 calculation method used is based on the concept of the equation. the nature of the capacity of the natural gas pipeline by a suitable, special
The levy can be measured to characterize the physical properties and calculation. These characteristic physical property values \u200b\u200btogether with pressure and temperature as input data calculation method.
This calculation method using high calorific value, relative density and CO2 content as input variables. Can not be particularly suitable for gas molar
Case of full composition, it lies Youyuezhichu calculation is relatively simple. Artificial containing gas blend, the need to know the content of H2.
4.2 SGERG-88 equation
SGERG-88 calculation method is based on the GERG-88 standard Willy equation (expressed as SGERG-88 equation, see
GB/T 17747.1). The SGERG-88 is derived from the equation Willy MGERG-88 out of the equation. MGERG-88 is based on the equation
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