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انجمن مواد نفتی آمریکا API) American Petroleum Institute) تنها شرکت ملی با بیش از 400 عضو سازمانی شامل شرکتهای بزرگ نفتی است که در تمام جنبه های صنعت نفت و گاز طبیعی آمریکا فعالیت می کند. API بیش از 75 سال است که به تدوین و توسعه استانداردهای کار در صنعت نفت و پتروشیمی می پردازد.
استانداردهای موجود
Chapter 1:Vocabulary
Chapter 2:Tank Calibration
API MPMS 2.2A-Measurement and Calibration of Upright Cylindrical Tank Strapping Method
API MPMS 2.8A-Calibration of Tanks on Ships and Oceangoing Barges
API MPMS 2.2B-Calibration of Upright Cylindrical Tanks Using the Optical Reference Line Method
API MPMS 2.8B-Recommended Practice for The Establishment of the Location of the Reference Gauge Point and the Gauge Height of Tanks on Marine Tank Vessels
API MPMS 2.2C-Calibration of Upright Cylindrical Tanks Using the Optical- triangulation Method
API MPMS 2.7-Calibration of Barge Tanks
Chapter 3:Tank Gauging
API MPMS 3.1A-Standard Practice for the Manual Gauging of Petroleum and Petroleum Products
API MPMS 3.2-Standard Practice for Gauging Petroleum and Petroleum Products in Tank Cars
API MPMS 3.3-Standard Practice for Level Measurement of Liquid Hydrocarbons in Stationary Pressurized Storage Tanks by Automatic Tank Gauging
API MPMS 3.6-Measurement of Liquid Hydrocarbons by Hybrid Tank Measurement Systems
Chapter 4:Proving System
API MPMS 4.1-Introduction
API MPMS 4.2-Pipe Provers
API MPMS 4.3-Small Volume Provers
API MPMS 4.4-Tank Provers
API MPMS 4.5-Master-Meter Provers
API MPMS 4.6-Master-Pulse Interpolation
API MPMS 4.7-Field Standard Test Measures
API MPMS 4.8-Operation of Proving System
API MPMS 4.9.1-Methods of Calibration for
Displacement and Volumetric
Tank Provers
API MPMS 4.9.2-Methods of Calibration for
Displacement and Volumetric
Tank Provers
Chapter 5: Metering
API MPMS 5.1-General Consideration for measurement by Meters
API MPMS 5.2-Liquid Metering
API MPMS 5.3-Measurement of Liquid Hydrocarbons by Turbine Meters
API MPMS 5.4-Accessory Equipment for Liquid Meters
API MPMS 5.5-Fidelity and Security of Flow Measurement Pulsed-Data Transmission Systems
API MPMS 5.6-Measurement of Liquid Hydrocarbons by Coriolis Meters
API MPMS 5.8-Measurement of Liquid Hydrocarbons by Ultrasonic Flow Meters Using Transit Time Technology
Chapter 6: Metering Assemblies
API MPMS 6.1-Lease Automatic Custody Transfer (LACT) Systems
API MPMS 6.2-Loading-Rack and Tank-Truck metering Systems For Non-LPG Products
API MPMS 6.4-Metring Systems for Aviation Fueling Facilities
API MPMS 6.5-Metring Systems for Loading and Unloading Marine Bulk Carriers
API MPMS 6.6-Pipeline Metring Systems
API MPMS 6.7-Metring Viscous Hydrocarbons
Chapter 8: Sampling
API MPMS 8.1-Standard Practice for Manual Sampling of Petroleum and Petroleum Produucts
API MPMS 8.2-Standard Practice for Automatic Sampling of Liquid of Petroleum and Petroleum Products
API MPMS 8.3-Standard Practice for Mixing and Handling of Liquid Samples of Petroleum and Petroleum Products
API MPMS 8.4-Standard Practice for Manual Sampling and Handling of Fuels for Volatility Measurement
Chapter 9: Density Determination
API MPMS 9.1-Hydrometer Test Method for Density (Specific Gravity), or API Gravity of Crude Petroleum and Liquid Petroleum Products
API MPMS 9.2-Pressure Hydrometer Test Method for Density or Relative Density
API MPMS 9.3-Thermohydrometer Test Method for Density and API Gravity of Crude Petroleum and Liquid Petroleum Products
Chapter 10: Sediment and Water
API MPMS 10.2-Determination of Water in Crude Oil by the Distillation Method
API MPMS 10.3-Determination of Water and Sediment in Crude Oil by the Centrifuge Method (Laboratory Procedure)
API MPMS 10.6-Determination of Water and Sediment in Fuuel Oils by Centrifuge Method (Laboratory Procedure)
API MPMS 10.7-Standard Test Method for Water in Crude Oils by Karl Fischer Titration (Volumetric)
API MPMS 10.8-Standard Test Method for Sediment in Crude Oil by Membrane Filtration
API MPMS 10.9-Standard Test Method for Water In Crude Oils by Coulometric Karl Fischer Titration
Chapter 11: Volume Correction Factors
API MPMS 11.1-Vol II-TABLE 5B & TABLE 6B
API MPMS 11.1-Vol V-TABLE 23B & TABLE 53B
API MPMS 11.2.1-Compressibility Factors for Hydrocarbons: 0-90 API Gravity Range
API MPMS 11.2.1M-Compressibility Factors for Hydrocarbons: 638-1074 Kilograms per Cubic Metre Range
API MPMS 11.2.2-Compressibility Factors for Hydrocarbons: 0.350-0.637 Relative Density (60℉/60℉) and-50℉ to 140℉ Metering Temperature
API MPMS 11.2.2M-Compressibility Factors for Hydrocarbons: 350-637 Kilograms per Cubic Metre Density (15℃) and – 46℃ to 60℃ Metering Temperature
API MPMS 11.2.3-Water Calibration of Volumetric Provers
API MPMS 11.2.3M-Water Calibration of Volumetric Provers
API MPMS 11.3.3.2-Propylene Compressibility Tables
Chapter 12: Calculation of Petroleum Quantities
API MPMS 12.1.1-Calculation of Static Petroleum Quantities
API MPMS 12.2-Calculation of Liquid Petroleum Quantities Measured by Turbine or Displacement Meters
API MPMS 12.2.1-Calculation of Petroleum Quantities Using Dynamic Measurement Methods and Volumetric Correction Factors-Introduction
API MPMS 12.2.2-Calculation of Petroleum Quantities Using Dynamic Measurement Methods and Volumetric Correction Factors-Introduction-Measurement Tickets
API MPMS 12.2.3-Calculation of Petroleum Quantities Using Dynamic Measurement Methods and Volumetric Correction Factors-Introduction-Proving Reports
API MPMS 12.2.4-Calculation of Petroleum Quantities Using Dynamic Measurement Methods and Volumetric Correction Factors-Introduction-Calculation of Base Prover Volumes by the Waterdraw Method
API MPMS 12.2.5-Calculation of Petroleum Quantities Using Dynamic Measurement Methods and Volumetric Correction Factors-Introduction-Calculation of Base Prover Volume by Meter Method
API MPMS 12.3-Calculation of Petroleum Quantities
Chapter 13: Statistical Aspects and Sampling
API MPMS 13.1-Statistical Concepts and Procedures in Measurement
Chapter 14: Natural Gas Fluids Measurement
API MPMS 14.1-Collecting and Handling of Natural Gas Samples for Custody Transfer
API MPMS 14.3.1-Concentric, Square-Edge Orifice Meters-General Equations and Uncertainty Guidelines
API MPMS 14.3.2-Concentric, Square-Edge Orifice Meters-Specification and Installation Requirements
API MPMS 14.3.3-Concentric, Square-Edge Orifice Meters-Natural Gas Applications
API MPMS 14.3.4-Concentric, Square-Edge Orifice Meters-Background, Development, Implementation Procedures and Subroutine Documentation
API MPMS 14.4-Converting Mass of Natural Gas Liquids and Vapors to Equivalent Liquid Volumes
API MPMS 14.6-Continuous Density Measurement
API MPMS 14.7-Standard for Mass Measurement of Natural Gas Liquids
API MPMS 14.8-Liquefied Petroleum Gas Measurement
Chapter 15: Guidelines for the Use of the International System of Units (SI) in the Petroleum and Allied Industries
Chapter 16: Measurement of Hydrocarbon Fluids By Weight or Mass
API MPMS 16.2-Mass Measurement of liquid Hydrocarbons in Vertical Cylindrical Storage Tanks By Hydrostatic Tank Gauging
Chapter 17: Marine Measurement
API MPMS 17.1-Guideline for Marine Cargo Inspection
API MPMS 17.2-Measurement of Cargoes On Board Tank Vessels
API MPMS 17.3-Guidelines for Identification of the Source of Free Waters Associated With Marine Petroleum Cargo Movements
API MPMS 17.4-Method for Quantification of Small Volumes on Marine Vessels (OBQ/ROB)
API MPMS 17.5-Guidelines for Cargo Analysis and Reconciliation
API MPMS 17.6-Guidelines for Determining the Fullness of Pipelines Between Vessels and Shore Tanks
API MPMS 17.7-Recommended Practices for Developing Barge Control Factors (Volume Ratio)
Chapter 18: Custody Transfer
API MPMS 18.1-Measurement Procedures for Crude Oil Gathered From Small Tanks by Truck
Chapter 19: Evaporative Loss Measurement
API MPMS 19.1-Evaporative Loss From Fixed Roof Tanks
API MPMS 19.2-Evaporative Loss From Floating-Roof Tanks
API MPMS 19.3A-Wind Tunnel Test Method for the Measurement of Deck-Fitting Loss Factors for External Floating-Roof Tanks
Chapter 21:Flow Measurement Using Electronic Metering Systems
API MPMS 21.1-Electronic Gas Measurement
API MPMS 21.2-Flow Measurement Using Electronic Metering Systems, Inferred Mass
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