Gas flow meter online comparison
Gas flow meter online comparison, Total:131 items.
The international standard classification for "Gas flow meter online comparison" includes: Volumetric equipment and measurements , Flow in closed conduits .
The Chinese standard classification for "Gas flow meter online comparison" includes: Oil and gas gathering and transportation equipment , Flow capacity and material level instrument , Chemical Measurement , Mechanics Measurement .
Professional Standard - Petroleum
- SY/T 6660-2006 Measurement of natural Gas flow by Rotary displacement gas meters
- SY/T 6999-2014 General requirements for flow meters on-line verification with a traveling gas flow standard facility
- SY 6660-2006 Measuring Natural Gas Flow with Rotary Positive Displacement Gas Flow Meters
- SY 6999-2014 General requirements for on-line verification of flowmeters with mobile gas flow standard devices
National Metrological Technical Specifications of the People's Republic of China
- JJF 1960-2022 Metrological Technical Specification for Metrological Comparison of Reference Materials
- JJF 1357-2012 Calibration Specification for Wet Gas Meters
- JJF 1117-2010 Measurement Comparison
- JJF(铁道) 603-2007 Rule for the Operation of Measurement Comparisons of Railway Laboratory
- JJF 1708-2018 On Line Calibration Specification for Coriolis Mass Flowmeters by Master Meter Method
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 18604-2001 Measurement of natural gas flow by ultrasonic flow meter
- GB/T 18604-2014 Measurement of Natural Gas Flow by Gas Ultrasonic Flow Meters
- GB/T 25922-2010 Measurement of fluid flow in closed conduits—Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
- GB/T 25922-2023 Measurement of fluid flow in closed conduits—Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
- GB/T 17291-1998 Petroleum liquid and gas measurement --STANDARD reference conditions
- GB/T 32201-2015 Gas meters
- GB/T 21391-2008 Measurement of natural gas flow by turbine meters
- GB/T 36241-2018 Vortex precession flowmeters for gas
- GB/T 18604-2023 Measurement of natural gas flow by gas ultrasonic flow meters
- GB/T 18940-2003 Measurement of gas flow in closed conduits--Turbine meters
- GB/T 28848-2012 Intelligent gas flow meter
Professional Standard - Energy
- NB/T 11146-2023 Technical specification for online comparison of power quality monitoring device
National Metrological Verification Regulations of the People's Republic of China
- JJG633-2024 Gas volumetric flowmeters
- JJG 1100-2014 Gas-Flow Proportional Counter Gross Alpha and Gross Beta Measuring Instruments
- JJG 633-2005 Verification Regulation for Gas Displacement Meters
- JJG 2044-2019 Metrological Instruments for Air Kerma of γ Rays
- JJG 412-2005 Verification Regulation of Water-Flow Gas Calorimeter
- JJG 2064-1990 Gas Flow Measuring Instruments
- JJG 1132-2017 Thermal Mass Gas Flowmeters
- JJG 2064-2017 Measuring Instruments for Gas Flow
Group Standards of the People's Republic of China
- T/CIDA 0014-2022 Specification for field detection of flow comparison by real flow method in open channel
- T/ZZB 0108-2016 Turbine gas flowmeters
- T/ZZB 0110-2016 Rotary gas flowmeters
- T/QGCML 418-2022 Online Remote Ultrasonic Open Channel Flowmeter
- T/CIDA 0013-2022 Technical regulation for open channel radar flowmeter online measurement
- T/CSEE 0296-2022 Vortex flowmeter online calibration guide
- T/STIC 110093-2023 Intelligent roots flowmeters for gas
Professional Standard - Machinery
- JB/T 7385-2015 Roots flowmeters for gas
- JB/T 7385-1994 Roots Gas Meter
Chongqing Provincial Standard of the People's Republic of China
- DB50/T 541-2014 Wet Gas Flow Meter
国家市场监督管理总局、中国国家标准化管理委员会
- GB/T 21391-2022 Measurement of natural gas flow by turbine gas meters
- GB/T 36242-2018 Volume conversion device for gas meter
中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会
- GB/T 34041.2-2017 Measurement of fluid flow in closed conduits―Ultrasonic meters for gas―Part 2:Meters for industrial applications
- GB/T 34041.1-2017 Measurement of fluid flow in closed conduits―Ultrasonic meters for gas―Part 1:Meters for custody transfer and allocation measurement
Guangdong Provincial Standard of the People's Republic of China
- DB4401/T 70-2020 Online calibration method of product oil flow meter
Fujian Provincial Standard of the People's Republic of China
- DB35/T 1538-2015 Remote on-line diagnosis and inspection method of ultrasonic flowmeter for natural gas
国家能源局
- SY/T 6660-2021 Measurement of natural gas flow by rotary displacement gas meter
Professional Standard - Urban Construction
- CJ/T 364-2011 Online calibration requirement for piping electromagnetic flowmeter
American Society of Mechanical Engineers (ASME)
- ASME MFC-16-2014 Measurement of Liquid Flow in Closed Conduits with Electromagnetic Flowmeters
- ASME MFC-16M-1995 Measurement of fluid flow in closed conduits by means of electromagnetic flowmeters
- ASME MFC.4M-1986(R2016) Measurement of Gas Flow by Turbine Meters
- ASME MFC-26-2011 Measurement of Gas Flow by Bellmouth Inlet Flowmeters
- ASME MFC-4M-1986 Measurement of Gas Flow by Turbine Meters
- ASME MFC-26-2011(R2018) Measurement of Gas Flow by Bellmouth Inlet Flowmeters
- ASME MFC-5M-1985 Measurement of Liquid Flow in Closed Conduits Using Transit-Time Ultrasonic Flowmeters
- ASME MFC-21.1-2015 Measurement of Gas Flow by Means of Capillary Tube Thermal Mass Flowmeters and Mass Flow Controllers
- ASME MFC-21.1-2015(R2020) Measurement of Gas Flow by Means of Capillary Tube Thermal Mass Flowmeters and Mass Flow Controllers
KR-KS
- KS B ISO 2537-2021 Hydrometry — Rotating-element current-meters
- KS B ISO 748-2021 Hydrometry — Measurement of liquid flow in open channels using current-meters or floats
- KS B ISO 18320-2022 Hydrometry — Measurement of liquid flow in open channels — Determination of the stage–discharge relationship
Korean Agency for Technology and Standards (KATS)
- KS B ISO 2537:2021 Hydrometry — Rotating-element current-meters
- KS B ISO 748:2021 Hydrometry — Measurement of liquid flow in open channels using current-meters or floats
- KS B 50032-2020 Gas volume meters-Part 3:Rotary pistongas meters and turbine gas meters
- KS B ISO 18320:2022 Hydrometry — Measurement of liquid flow in open channels — Determination of the stage–discharge relationship
- KS B ISO TR 3313-2014(2019) Measurement of fluid flow in closed conduits — Guidelines on the effects of flow pulsations on flow-measurement instruments
- KS M ISO 3993:2003 Liquefied petroleum products gas and light hydrocarbons-Determination of density or relative density-Pressure hydrometer method
- KS B ISO 9951-2019 Measurement of gas flow in closed conduits — Turbine meters
American National Standards Institute (ANSI)
- ANSI/ASME MFC-26-2011 Measurement of Gas Flow by Bellmouth Inlet Flowmeters
- ANSI B109.3-2000 Rotary-Type Gas Displacement Meters
CN-STDBOOK
RO-ASRO
- STAS R 12091-1982 MEASUREMENT OF FLUID FLOW Estimation of uncertainty af a flow-rate measurement
Japanese Industrial Standards Committee (JISC)
- JIS B 7525-1:2013 Density hydrometers
- JIS B 7525:1997 Density hydrometers
- JIS B 7525-3:2013 Hydrometer-type relative density meters
- JIS B 7525-1:2018 Hydrometers -- Part 1: Density hydrometers
British Standards Institution (BSI)
- BS 718:1991 Specification for density hydrometers
- BS EN ISO 748:2007 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats
- BS 734-1:1973 Measurement of the density of milk using a hydrometer - Specification for hydrometers for use in milk
- PD ISO/TS 20460:2015 Paper and board. Automated on-line testing. Metrological comparability between standardized measurements and output of on-line gauges
- BS 7965:2000 The selection, installation, operation and calibration of diagonal path transit time ultrasonic flowmeters for industrial gas applications
Compressed Gas Association (U.S.)
- CGA E-8-2007 GAS FLOWMETERS SECOND EDITION
German Institute for Standardization
- DIN EN ISO 748:2008 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats (ISO 748:2007); English version of DIN EN ISO 748:2008-02
American Gas Association
- AGA B109.3-2000 Rotary-Type Gas Displacement Meters XQ0010
SCC
- 10/30232464 DC BS EN 12480. Gas meters. Rotary displacement meters
- BS 4161-6:1979 Specification for gas meters-Rotary displacement and turbine meters for gas pressures up to 100 bar
- 11/30215951 DC BS ISO 17089-2. Measurement of fluid flow in closed conduits. Ultrasonic meters for gas. Part 2. Meters for industrial applications
- BS PD ISO/TS 20460:2015 Paper and board. Automated on-line testing. Metrological comparability between standardized measurements and output of on-line gauges
- AWWA ACE92112 Discrete and On-Line Particle Counting: Comparative Advantages
- AWWA ACE93210 Comparison of Online Particle Measuring Instruments
- AWWA JTMGT64440 Process Trumps Product in Calculating Impact Fees
- BS 4161-5:1990 Gas meters-Specification for diaphragm meters for working pressures up to 7 bar
- AENOR UNE 21320-4:1989 Fluids for electrotechnical applications. Determination of the absolute and relative density of insulating and turbine oils (areometer and pycnometer methods).
European Committee for Standardization (CEN)
- EN 12261:2018 Gas meters - Turbine gas meter
- EN ISO 748:2021 Hydrometry - Measurement of liquid flow in open channels - Velocity area methods using point velocity measurements (ISO 748:2021)
- EN ISO 748:2007 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats
- EN ISO 748:2000 Measurement of Liquid Flow in Open Channels - Velocity-Area Methods ISO 748:1997
International Organization for Standardization (ISO)
- ISO 748:2007 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats
- ISO/TS 20460:2015 Paper and board - Automated on-line testing - Metrological comparability between standardized measurements and output of on-line gauges
Association Francaise de Normalisation
- NF X10-301:2009 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats.
- XP Q03-210-2016 Paper and board - Automated on-line testing - Metrological comparability between standardized measurements and output of on-line gauges
- XP Q03-210*XP ISO/TS 20460:2016 Paper and board - Automated on-line testing - Metrological comparability between standardized measurements and output of on-line gauges
- NF EN ISO 20456:2019 Mesurage du débit des fluides dans les conduites fermées - Lignes directrices pour l'utilisation des débitmètres électromagnétiques dans les liquides conducteurs
American Society for Testing and Materials (ASTM)
- ASTM D3588-98 Standard Practice for Calculating Heat Value, Compressibility Factor, and Relative Density of Gaseous Fuels
- ASTM D3588-98(2003) Standard Practice for Calculating Heat Value, Compressibility Factor, and Relative Density of Gaseous Fuels
- ASTM E100-10 Standard Specification for ASTM Hydrometers
- ASTM E100-95 Standard Specification for ASTM Hydrometers
- ASTM E100-05 Standard Specification for ASTM Hydrometers
- ASTM E100-15 Standard Specification for ASTM Hydrometers
- ASTM E100-03 Standard Specification for ASTM Hydrometers
- ASTM E100-15a Standard Specification for ASTM Hydrometers
- ASTM E100-95(2001) Standard Specification for ASTM Hydrometers
CZ-CSN
- CSN 25 7860-1977 Gas meters. Fundamental provisions
- CSN 99 6801 ZZ1-2000 Plan the following pressure gauges and flow rates for gas flow ranges from 0001 to 10 000 cubic meters h - 1
- CSN 99 6801-1989 Hierarchy scheme of gas flowmeters and gas volume-meters for rate of flow ranging from 0,001 to 10000 m3h-1
- CSN 25 7866-1967 Gas meters with rotary pistons
CU-NC
- NC 90-13-42-1988 Metrological Assurance. Densimeters and Aerometers. International Alcoholimetric Tables
GSO
- OS GSO ISO 17089-2:2017 MEASUREMENT OF FLUID FLOW IN CLOSED CONDUITS- ULTRASONIC METERS FOR GAS – PART2: METERS FOR INDUSTRIAL APPLICATIONS
- BH GSO ISO 17089-2:2017 MEASUREMENT OF FLUID FLOW IN CLOSED CONDUITS- ULTRASONIC METERS FOR GAS – PART2: METERS FOR INDUSTRIAL APPLICATIONS
- GSO ISO 17089-2:2017 MEASUREMENT OF FLUID FLOW IN CLOSED CONDUITS- ULTRASONIC METERS FOR GAS – PART2: METERS FOR INDUSTRIAL APPLICATIONS
- GSO IEC 60628:2015 Gassing of insulating liquids under electrical stress and ionization
- BH GSO ISO 7194:2023 Measurement of fluid flow in closed conduits — Velocity-area methods of flow measurement in swirling or asymmetric flow conditions in circular ducts by means of current-meters or Pitot static tubes
- GSO ISO 7194:2022 Measurement of fluid flow in closed conduits — Velocity-area methods of flow measurement in swirling or asymmetric flow conditions in circular ducts by means of current-meters or Pitot static tubes
American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE)
- ASHRAE 41.8-1989 Standard Methods of Measurement of Flow of Liquids in Pipes Using Orifice Flowmeters
NL-NEN
- NEN 958-1971 Determination of density at 20 °C of milk with a density hydrometer (lactometer)
API - American Petroleum Institute
- API MPMS 14.12-2017 Manual of Petroleum Measurement Standards Chapter 14-Natural Gas Fluid Measurement Section 12-Measurement of Gas by Vortex Meters (FIRST EDITION)
- API RP 85 RUSSIAN-2003 Use of Subsea Wet-gas Flowmeters in Allocation Measurement Systems (ПЕРВОЕ ИЗДАНИЕ)
ESDU - Engineering Sciences Data Unit
- ESDU 69004 A-1970 Convective heat transfer during forced crossflow of fluids over a circular cylinder including free convection effects.
BE-NBN
- NBN 688 F-1966 Testing of fluid flow through air flow pressure reducing element equipment. Overview
- NBN 722 F-1967 Through the air flow pressure reducing element. Determination of Fluid Flow by Orifice Plate Equipment
ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc.
- ASHRAE 3705-1993 Comparative Study of Room Airflow: Numerical Prediction Using Computational Fluid Dynamics and Full- Scale Experimental Measurements
National Aeronautics and Space Administration (NASA)
- NASA NACA-RM-E52H15-1952 Pressure limits of flame propagation of pure hydrocarbon-air mixtures at reduced pressure