API MPMS 6 6-1991 Manual of Petroleum Measurement Standards Chapter 6-Metering Assemblies Section-Pipeline Metering Systems (SECOND EDITION)《石油计量标准手册 第6章-计量附件 第.pdf
《API MPMS 6 6-1991 Manual of Petroleum Measurement Standards Chapter 6-Metering Assemblies Section-Pipeline Metering Systems (SECOND EDITION)《石油计量标准手册 第6章-计量附件 第.pdf》由会员分享,可在线阅读,更多相关《API MPMS 6 6-1991 Manual of Petroleum Measurement Standards Chapter 6-Metering Assemblies Section-Pipeline Metering Systems (SECOND EDITION)《石油计量标准手册 第6章-计量附件 第.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、Manual of PetroleumMeasurement StandardsChapter 6Metering AssembliesSection 6Pipeline Metering SystemsSECOND EDITION, MAY 1991REAFFIRMED, JANUARY 2012Manual of PetroleumMeasurement StandardsChapter 6Metering AssembliesSection 6Pipeline Metering SystemsMeasurement CoordinationSECOND EDITION, MAY 1991
2、REAFFIRMED, JANUARY 2012SPECIAL NOTES 1. API PUBLICATIONS NECESSARILY ADDRESS PROBLEMS OF A GENERAL NATURE. WITH RESPECT TO PARTICULAR CIRCUMSTANCES, LOCAL, STATE, AND FEDERAL LAWS AND REGULATIONS SHOULD BE REVIEWED. 2. API IS NOT UNDERTAKING TO MEET THE DUTIES OF EMPLOYERS, MANUFACTURERS, OR SUPPLI
3、ERS TO WARN AND PROPERLY TRAIN AND EQUIP THEIR EMPLOYEES, AND OTHERS EXPOSED, CONCERNING HEALTH TIONS UNDER LOCAL, STATE, OR FEDERAL LAWS. AND SAFETY RISKS AND PRECAUTIONS NOR UNDERTAKING THEIR OBLIGA- 3. INFORMATION CONCERNING SAFETY AND HEALTH RISKS AND PROPER TIONS SHOULD BE OBTAINED FROM THE EMP
4、LOYER, THE MANUFACTURER OR SUPPLIER OF THAT MATERIAL, OR THE MATERIAL SAFETY DATA SHEET. PRECAUTIONS WITH RESPECT TO PARTICULAR MATERIALS AND CONDI- 4. NOTHING CONTAINED IN ANY API PUBLICATION IS TO BE CONSTRUED AS GRANTING ANY RIGHT, BY IMPLICATION OR OTHERWISE, FOR THE MANUFACTURE, SALE, OR USE OF
5、 ANY METHOD, APPARATUS, OR PRODUCT COVERED BY LETTERS PATENT. NEITHER SHOULD ANYTHING CONTAINED IN THE PUBLICATION BE CONSTRUED AS INSURING ANYONE AGAINST LIABILITY FOR INFRINGEMENT OF LETTERS PATENT. 5. GENERALLY, API STANDARDS ARE REVIEWED AND REVISED, REAF- FIRMED, OR WITHDRAWN AT LEAST EVERY FIV
6、E YEARS. SOMETIMES A REVIEW CYCLE. THIS PUBLICATION WILL NO LONGER BE IN EFFECT AS AN OPERATIVE API STANDARD FIVE YEARS AFTER ITS PUBLICATION DATE OR, WHERE AN EXTENSION HAS BEEN GRANTED, UPON REPUBLICATION. THE STATUS OF THE PUBLICATION CAN BE ASCERTAINED FROM THE API AUTHORING DEPARTMENT (TELEPHON
7、E 202 682-8000). A CATALOG OF API PUBLICATIONS AND MATERIALS IS PUBLISHED ANNUALLY AND UPDATED QUARTERLY BY API, 1220 L STREET, N.W., WASHINGTON, D.C. 20005. ONE-TIME EXTENSION OF UP TO TWO YEARS WILL BE ADDED TO THIS Copyright 1991 American Petroleum Institute FOREWORD This publication provides gui
8、delines for selecting the types and sizes of meters for use on pipelines. API publications may be used by anyone desiring to do so. Every effort has been made by the Institute to assure the accuracy and reliability of the data contained in them; however, the Institute makes no representation, warran
9、ty, or guarantee in connection with this publication and hereby expressly disclaims any liability or responsibility for loss or damage resulting from its use or for the violation of any federal, state, or municipal regulation with which this publication may conflict. Suggested revisions are invited
10、and should be submitted to the director of the Measure- ment Coordination Department, American Petroleum Institute, 1220 L Street, N.W., Washington, D.C. 20005. iii CONTENTS Page SECTION however, special additional precautions may be required. 6.6.2 Scope This chapter provides guidelines for selecti
11、ng the type and size of meter(s) to be used to measure pipeline movements. Types of accessories and instruments that may be desirable are specified, and the relative advantages and disadvantages of the methods of proving meters by tank prover, by conven- tional pipe prover, by small volume prover, a
12、nd by master meter are discussed. This chapter also includes discussions on obtaining the best operating results from a pipeline-meter station. 6.6.3 Field of Application The information provided in this chapter may be applied to the following systems: a. Gathering systems from production facilities
13、 to a main crude oil storage or pipeline system. b. Crude oil pipelines. c. Refined product pipelines. d. Liquefied petroleum gas (LPG) pipelines. 6.6.4 Referenced Publications Manual of Petroleum Measurement Standards Chapter KProving Systems” Chapter 4.3, Small-Volume Provers” Chapter 5-“Metering”
14、 Chapter 5.1, “General Considerations for Measurement by Meters” Chapter 5.2, “Measurement of Liquid Hydrocarbons by Displacement Meter” Chapter 5.3, “Measurement of Liquid Hydrocarbons by Turbine Meters” Chapter 5.4, “Accessory Equipment for Liq- uid Meters” Chapter 5.5, “Fidelity and Security of F
15、low Measurement Pulsed-Data Transmission Systems” Chapter 8-“Sampling” Chapter 12.2, “Calculation of Liquid Petroleum Quantities Measured by Turbine or Displacement Meters” Chapter 13.2, “Statistical Evaluation of Meter Proving Data” (under development) 6.6.5 Meter Station Design As defined in this
16、publication, a metering station on a pipeline system is one where custody transfer measurement takes place through one or more meters. When a pipeline- metering system is designed, the objective is to obtain op- timum measurement accuracy for custody transfers regardless of the volume handled. The m
17、easurement accuracy of the system depends on meters, provers, valves, and other equipment selected for that measurement system. Other considerations for a meter station design include providing for future expansion and upgrades, accessibility of the equipment for maintenance, and accuracy verificati
18、on. Chapters 4 and 5 of this manual should be consulted for further requirements common to all proving and metering systems. 6.6.5.1 METER SELECTION Although displacement meters (see Chapter 5.2) and tur- bine meters (see Chapter 5.3) are the most commonly used meters in pipeline applications, other
19、 types of meters are not excluded if they serve the intended purpose. Many of the aspects of the metering functions are con- sidered at length in other parts of this manual. Please refer to the following chapters for more information. Meter selection is discussed in Chapter 5.1. In general, turbine
20、meters are preferred for high-flow rate and low- viscosity applications. In high-pressure applications, capital 1 2 CHAPTER 6-METERING ASSEMBLIES and installation costs ofturbine meters may be less. However, in crude oil service viscosity, wax content or the presence of fibrous material may limit th
21、e use of turbine meters. When the relative merits of displacement and turbine meters are evaluated, both maintenance and operating costs should be considered. Maintenance costs for displacement meters may be significant when liquids with poor lubricity or abrasive characteristics are handled. Turbin
22、e meter maintenance costs are usually low, but maintenance of adequate back-pressure to ensure accuracy may result in higher power costs. Before selecting a meter, the designer must know or have a good estimate of the following: a. The range of physical and chemical characteristics of the liquid in:
23、 1. Viscosity, lubricity, and pour-point. 2. Density (API gravity). 3. Corrosive, abrasive, fibrous, wax, or other foreign material. 4. Vapor pressure. b. The range of flow rates and pressures. c. The range of liquid temperature and ambient temperatures that will be encountered. d. The duration of o
24、peration (continuous or intermittent). e. The location of the meter station and whether its control is to be local or remote, attended or unattended. 6.6.5.1.1 Viscosity The-linearity of a displacement meter improves as the viscosity of the fluid being metered increases. This improve- ment is a resu
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