API MPMS 5.4 Manual of Petroleum Measurement Standards Chapter 5-Metering Section 4-Accessory Equipment for Liquid Meters - FOURTH EDITION; ERTA: May 2015
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- CEN EN 12802 Road marking materials - Laboratory methods for identification
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- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
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- DIN EN 1790 Road marking materials - Preformed road markings
- DIN EN 13459 Road marking materials - Sampling from storage and testing
- CEN EN 12802 Road marking materials - Laboratory methods for identification
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
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- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
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- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- CEN EN 12802 Road marking materials - Laboratory methods for identification
- DIN EN 13459 Road marking materials - Sampling from storage and testing
- DIN EN 1790 Road marking materials - Preformed road markings
- DIN EN 1790 Road marking materials - Preformed road markings
- DIN EN 13459 Road marking materials - Sampling from storage and testing
- CEN EN 12802 Road marking materials - Laboratory methods for identification
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- ISO 3680 Determination of flash/no flash Rapid equilibrium closed cup method - Fourth Edition
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- CEN EN 12802 Road marking materials - Laboratory methods for identification
- DIN EN 13459 Road marking materials - Sampling from storage and testing
- DIN EN 13459 Road marking materials - Sampling from storage and testing
- CEN EN 12802 Road marking materials - Laboratory methods for identification
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- ISO 3680 Determination of flash/no flash Rapid equilibrium closed cup method - Fourth Edition
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- CEN EN 12802 Road marking materials - Laboratory methods for identification
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- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- ISO 3680 Determination of flash/no flash Rapid equilibrium closed cup method - Fourth Edition
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- CEN EN ISO 2811-1 Paints and varnishes - Determination of density - Part 1: Pyknometer method
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- ISO 3680 Determination of flash/no flash Rapid equilibrium closed cup method - Fourth Edition
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- DIN EN 4595 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Subsonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- ISO 3680 Determination of flash/no flash Rapid equilibrium closed cup method - Fourth Edition
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- CEN EN ISO 3251 Paints, varnishes and plastics - Determination of non-volatile matter content
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- ISO 3680 Determination of flash/no flash Rapid equilibrium closed cup method - Fourth Edition
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
- DIN EN 4594 Aerospace series - Paints and varnishes - Two component cold curing polyurethane finish - Supersonic erosion resistance
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American Petroleum Institute
Manual of Petroleum Measurement Standards Chapter 5-Metering Section 4-Accessory Equipment for Liquid Meters - FOURTH EDITION; ERTA: May 2015
N MPMS 5.4
Annotation
This section of API MPMS Chapter 5 describes the characteristics of accessory equipment that may be used with meters in liquid hydrocarbon service. Having a knowledge of these characteristics helps designers and operators of meter installations provide satisfactory quantity measurement results. Certain minimum requirements for devices that monitor temperature, density, and pressure are discussed in this section. Most system hardware, such as non-control valves, vents, and manifolding, is not discussed in this section.
Автоматический перевод:
Руководство нефтяной измерительной главы стандартов 4 вспомогательного оборудования секции с 5 измерениями для жидкостных расходомеров - FOURTH EDITION; ERTA: май 2015
Этот раздел API, Глава 5 MPMS описывает характеристики вспомогательного оборудования, которое может использоваться с метрами в жидком сервисе углеводорода. Наличие знания этих характеристик помогает разработчикам, и операторы установок метра обеспечивают удовлетворительные измерительные результаты количества. Определенные минимальные требования для устройств, чтобы температура монитора, плотность и давление были обсуждены в этом разделе. Большая часть оборудования системы, такого как нераспределительные клапаны, вентиляторы, и множение, не обсуждена в этом разделе.



