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The development of flow meters

The development of flow meters, Total:498 items.

In the international standard classification, The development of flow meters involves: Measurement of fluid flow, Thermodynamics and temperature measurements, Installations in buildings, On-board equipment and instruments, Road engineering, Environmental protection, Metrology and measurement in general, Internal combustion engines, External water conveyance systems, Radiocommunications, Telecommunication systems, Open systems interconnection (OSI), Equipment for petroleum and natural gas industries, Quality, Company organization and management, Protection against fire, Buildings, Electronic tubes, Electricity. Magnetism. Electrical and magnetic measurements, Power transmission and distribution networks, Measurement of force, weight and pressure, Paints and varnishes, Applications of information technology, Linear and angular measurements, Welding, brazing and soldering, Road vehicles in general, Aerospace engines and propulsion systems, Petroleum, petroleum products and natural gas handling equipment, Geology. Meteorology. Hydrology, Wind turbine systems and other alternative sources of energy, Milk and milk products, Natural gas, Tobacco, tobacco products and related equipment, Powder metallurgy, Rubber and plastics products, Fuels, Testing of metals, Inks. Printing inks, Paper and board, Ergonomics, Semiconductor devices, Electrical wires and cables, Surface treatment and coating, Industrial automation systems, Measurement of time, velocity, acceleration, angular velocity, Nuclear energy engineering, Radiation protection.


American Society for Testing and Materials (ASTM), The development of flow meters

  • ASTM D5541-94(1998) Standard Practice for Developing a Stage-Discharge Relation for Open Channel Flow
  • ASTM D5541-94(2014) Standard Practice for Developing a Stage-Discharge Relation for Open Channel Flow
  • ASTM F1381-92(2003) Standard Guide for Planning and Developing 9-1-1 Enhanced Telephone Systems
  • ASTM E968-99 Standard Practice for Heat Flow Calibration of Differential Scanning Calorimeters
  • ASTM B855-11 Standard Test Method for Volumetric Flow Rate of Metal Powders Using the Arnold Meter and Hall Flowmeter Funnel
  • ASTM B213-13 Standard Test Methods for Flow Rate of Metal Powders Using the Hall Flowmeter Funnel
  • ASTM B213-11 Standard Test Methods for Flow Rate of Metal Powders Using the Hall Flowmeter Funnel
  • ASTM E1457-07 Standard Test Method for Measurement of Creep Crack Growth Times in Metals
  • ASTM E2506-15 Standard Guide for Developing a Cost-Effective Risk Mitigation Plan for New and Existing Constructed Facilities
  • ASTM E968-02(2008) Standard Practice for Heat Flow Calibration of Differential Scanning Calorimeters
  • ASTM B213-20 Standard Test Methods for Flow Rate of Metal Powders Using the Hall Flowmeter Funnel
  • ASTM B213-17 Standard Test Methods for Flow Rate of Metal Powders Using the Hall Flowmeter Funnel
  • ASTM D3195-90(2004) Standard Practice for Rotameter Calibration
  • ASTM D3195/D3195M-10 Standard Practice for Rotameter Calibration
  • ASTM D3195/D3195M-10(2023) Standard Practice for Rotameter Calibration
  • ASTM E2917-19 Standard Practice for Forensic Science Practitioner Training, Continuing Education, and Professional Development Programs
  • ASTM E2917-19a Standard Practice for Forensic Science Practitioner Training, Continuing Education, and Professional Development Programs
  • ASTM D4409-95(2008) Standard Test Method for Velocity Measurements of Water in Open Channels with Rotating Element Current Meters
  • ASTM E2380-05 Standard Test Method for Measuring Pavement Texture Drainage Using an Outflow Meter
  • ASTM E2380/E2380M-09 Standard Test Method for Measuring Pavement Texture Drainage Using an Outflow Meter

ISA - International Society of Automation, The development of flow meters

  • ISA RP16.4-1960 Nomenclature and Terminology for Extension - Type Variable Area Meters (Rotameters)
  • ISA RP16.6-1961 Methods and Equipment for Calibration of Variable Area Meters (Rotameters)
  • ISA RP31.1-1977 Specification@ Installation@ and Calibration of Turbine Flowmeters
  • ISA 97.00.01-2014 Face-to-face Dimensions of Flanged Vortex Flowmeters

European Telecommunications Standards Institute (ETSI), The development of flow meters

  • ETSI GS MOI 002-2012 Measurement Ontology for IP traffic (MOI); Requirements for IP traffic measurement ontologies development (V1.1.1)
  • ETSI TR 102 505-2012 Speech and multimedia Transmission Quality (STQ); Development of a Reference Web page (V1.3.1)

US-FCR, The development of flow meters

BE-NBN, The development of flow meters

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., The development of flow meters

  • ASHRAE 41.10-2003 Flowmeter Test Methods for Mass Flow Measurement of Volatile Refrigerants
  • ASHRAE OR-05-16-3-2005 Design Tool for Display Case Evaporators
  • ASHRAE CH-95-9-1995 Historical Development of Building Energy Calculations
  • ASHRAE SD-95-16-1995 New Developments in Domestic Refrigerator and Freezer Designs
  • ASHRAE 41.9-1988 Standard Calorimeter Test Method for Flow Measurement of a Volatile Refrigerant
  • ASHRAE 4280-1999 Development of Rating Correlations for R-134a Flowing Through Adiabatic Capillary Tubes
  • ASHRAE 41.10-2013 Standard Methods for Refrigerant Mass Flow Measurement Using Flowmeters
  • ASHRAE MN-00-3-1-2000 Development of Expanded AMeDAS Weather Data for Building Energy Calculation in Japan
  • ASHRAE 41.9-2000 Calorimeter Test Methods for Mass Flow Measurements of Volatile Refrigerants
  • ASHRAE SF-98-19-1998 Symposium on Current Advances in the Design@ Test@ and Application of Gas Engine-Driven Heat Pumps
  • ASHRAE 41.9-2018 Standard Methods for Refrigerant Mass Flow Measurements Using Calorimeters
  • ASHRAE 4425-2001 Flow Calculations for Fixed-Area Expansion Devices
  • ASHRAE 41.9-2011 Standard Methods for Volatile-Refrigerant Mass Flow Measurements Using Calorimeters
  • ASHRAE 41.9 ERTA-2017 Standard Methods for Volatile-Refrigerant Mass Flow Measurements Using Calorimeters
  • ASHRAE 3905-1995 Measurement of Turbulence Statistics in a Model Fire Room by LDV
  • ASHRAE 4265-1999 Measurements and Computations of Room Airflow with Displacement Ventilation
  • ASHRAE AT-96-17-1-1996 Development of Design Model for a Rectifier in GAX Absorption Heat Pump Systems

American National Standards Institute (ANSI), The development of flow meters

American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE), The development of flow meters

  • ASHRAE 41.10-2008 Standard Methods for Volatile-Refrigerant Mass Flow Measurements Using Flowmeters
  • ASHRAE 41.10 ERTA-2021 Standard Method for Refrigerant Mass Flow Measurement Using Flowmeters
  • ASHRAE 41.8-1989 Standard Methods of Measurement of Flow of Liquids in Pipes Using Orifice Flowmeters
  • ASHRAE 4768-2005 Development of the Rsidential Load Factor Method for Heating and Cooling Load Calculations RP-1199
  • ASHRAE 4841-2006 The Effect of Elbows on the Accuracy of Liquid Flow Measurement with an Insertion Flowmeter

IETF - Internet Engineering Task Force, The development of flow meters

  • RFC 5073-2007 IGP Routing Protocol Extensions for Discovery of Traffic Engineering Node Capabilities
  • RFC 5329-2008 Traffic Engineering Extensions to OSPF Version 3
  • RFC 3630-2003 Traffic Engineering (TE) Extensions to OSPF Version 2
  • RFC 8282-2017 Extensions to the Path Computation Element Communication Protocol (PCEP) for Inter-Layer MPLS and GMPLS Traffic Engineering
  • RFC 7308-2014 Extended Administrative Groups in MPLS Traffic Engineering (MPLS-TE)
  • RFC 5088-2008 OSPF Protocol Extensions for Path Computation Element (PCE) Discovery
  • RFC 4124-2005 Protocol Extensions for Support of Diffserv-aware MPLS Traffic Engineering
  • RFC 5089-2008 IS-IS Protocol Extensions for Path Computation Element (PCE) Discovery
  • RFC 8306-2017 Extensions to the Path Computation Element Communication Protocol (PCEP) for Point-to-Multipoint Traffic Engineering Label Switched Paths
  • RFC 6006-2010 Extensions to the Path Computation Element Communication Protocol (PCEP) for Point-to-Multipoint Traffic Engineering Label Switched Paths
  • RFC 5316-2008 ISIS Extensions in Support of Inter-Autonomous System (AS) MPLS and GMPLS Traffic Engineering
  • RFC 5392-2009 OSPF Extensions in Support of Inter-Autonomous System (AS) MPLS and GMPLS Traffic Engineering
  • RFC 4972-2007 Routing Extensions for Discovery of Multiprotocol (MPLS) Label Switch Router (LSR) Traffic Engineering (TE) Mesh Membership
  • RFC 5163-2008 Extension Formats for Unidirectional Lightweight Encapsulation (ULE) and the Generic Stream Encapsulation (GSE)
  • RFC 8571-2019 BGP - Link State (BGP-LS) Advertisement of IGP Traffic Engineering Performance Metric Extensions
  • RFC 7138-2014 Traffic Engineering Extensions to OSPF for GMPLS Control of Evolving G.709 Optical Transport Networks
  • RFC 5786-2010 Advertising a Router’s Local Addresses in OSPF Traffic Engineering (TE) Extensions (Updates: 3630)
  • RFC 8281-2017 Path Computation Element Communication Protocol (PCEP) Extensions for PCE-Initiated LSP Setup in a Stateful PCE Model
  • RFC 5557-2009 Path Computation Element Communication Protocol (PCEP) Requirements and Protocol Extensions in Support of Global Concurrent Optimization
  • RFC 8330-2018 OSPF Traffic Engineering (OSPF-TE) Link Availability Extension for Links with Variable Discrete Bandwidth
  • RFC 4363-2006 Definitions of Managed Objects for Bridges with Traffic Classes@ Multicast Filtering@ and Virtual LAN Extensions

ESDU - Engineering Sciences Data Unit, The development of flow meters

  • ESDU 66027 D-1997 FRICTION LOSSES FOR FULLY-DEVELOPED FLOW IN STRAIGHT PIPES
  • ESDU 66027 F-2008 Friction losses for fully-developed flow in straight pipes.
  • ESDU 66027 E-2007 Friction losses for fully-developed flow in straight pipes
  • ESDU 91025 E-2007 Non-Newtonian fluids: frictional pressure loss prediction for fully-developed flow in straight pipes.
  • ESDU 91025 E-2011 Non-Newtonian fluids: Frictional pressure loss prediction for fully-developed flow in straight pipes
  • ESDU 81044-1981 Heat transfer coefficients for water or steam in plain circular tubes: fully-developed turbulent flow.
  • ESDU 74029 E-2012 Friction losses for fully-developed flow in straight pipes of constant cross section – subsonic compressible flow of gases
  • ESDU 74029 E-2007 Friction losses for fully-developed flow in straight pipes of constant cross section - subsonic compressible flow of gases.
  • ESDU 74029 D-1993 FRICTION LOSSES FOR FULLY-DEVELOPED FLOW IN STRAIGHT PIPES OF CONSTANT CROSS-SECTION - SUBSONIC COMPRESSIBLE FLOW OF GASES
  • ESDU 66030 B-1980 PRESSURE LOSSES IN FLOWMETERING DEVICES
  • ESDU 66030 C-2007 Pressure losses in flowmetering devices.
  • TD MEMO 6403 C-1983 Method for the rapid estimation of theoretical spanwise loading due to a change of incidence.
  • ESDU 81009 A-1984 Estimation of windmilling drag and airflow of turbo-jet and turbo-fan engines.
  • ESDU 91025 D-1997 NON-NEWTONIAN FLUIDS: FRICTIONAL PRESSURE LOSS PREDICTION FOR FULLY DEVELOPED FLOW IN STRAIGHT PIPES PART I: BACKGROUND@ ANALYSES AND SOLUTION OUTLINE

GOSTR, The development of flow meters

  • GOST R 59159-2020 Missile and space equipment. Metrological provision of development. Basic principles
  • GOST R ISO 37120-2020 Sustainable development of community. Indicators for city services and quality of life
  • GOST R 58818-2020 Automobile roads with low traffic volume. Design, construction and calculation
  • GOST R 58928-2020 The system of ensuring the uniformity of measurements at the enterprises of the aviation industry. The order of carrying out of works on metrological support of test equipment
  • PNST 371-2019 Roads of general use with low traffic. Road pavement. Design and calculation
  • GOST R 58670-2019 United power system and isolated power systems. Planning of power systems development. Calculations of electric power regimes and determination of technical solutions in long-range development of power systems. Norms and requirements
  • GOST R 8.995-2020 State system for ensuring the uniformity of measurements. Volume flow rate and quantity of natural gas. Measurements procedure (method) using volumetric diaphragm and fluidics gas meters

Society of Automotive Engineers (SAE), The development of flow meters

  • SAE ARP4990-1997 Turbine Flowmeter Fuel Flow Calculations
  • SAE AS5304-2017 Standard Specification for Turbine Flowmeters
  • SAE AS9104/3A-2020 Requirements for Aviation, Space, and Defense Auditor Training, Development, Competence, and Authentication
  • SAE AS5304-2011 Standard Specification for Turbine Flowmeters
  • SAE J1157-1976 MEASUREMENT PROCEDURE FOR EVALUATION OF FULL-FLOW, LIGHT-EXTINCTION SMOKEMETER PERFORMANCE

RO-ASRO, The development of flow meters

American Gear Manufacturers Association, The development of flow meters

  • AGMA 93FTM7-1993 New Developments in Design, Manufacturing and Applications of Cylkro-(Face) Gears
  • AGMA 09FTM14-2009 Design, Development and Application of New High-Performance Gear Steels

Korean Agency for Technology and Standards (KATS), The development of flow meters

  • KS A 0516-2003 METHODS OF FLOW MEASUREMENT BY VORTEX FLOWMETERS
  • KS B ISO 14511-2014(2019) Measurement of fluid flow in closed conduits — Thermal mass flowmeters
  • KS B ISO 14511:2004 Measurement of fluid flow in closed conduits-Thermal mass flowmeters
  • KS B ISO 14511:2014 Measurement of fluid flow in closed conduits — Thermal mass flowmeters
  • 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 B ISO 748:2021 Hydrometry — Measurement of liquid flow in open channels using current-meters or floats
  • KS B ISO 11631:2004 Measurement of fluid flow-Methods of specifying flowmeter performance
  • KS B ISO 11631:2014 Measurement of fluid flow — Methods of specifying flowmeter performance
  • KS B ISO TR 12765-2005(2020) Measurement of fluid flow in closed conduits-Methods using transit-time ultrasonic flowmeters
  • KS B ISO 10790-2003(2018) Measurement of fluid flow in closed conduits-Guidance to the selection, installation and use of Coriolis meters (mass flow, density and volume flow measurements)
  • KS B ISO 18320:2022 Hydrometry — Measurement of liquid flow in open channels — Determination of the stage–discharge relationship
  • KS X ISO 17113:2009 Health informatics-Exchange of information between healthcare information systems-Developement of messages
  • KS X ISO 17113:2013 Health informatics-Exchange of information between healthcare information systems-Developement of messages
  • KS A 0611-1997(2017) Method of measurement by variable area flowmeters
  • KS B ISO TR 12764:2004 Measurement of fluid flow in closed conduits-Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • KS B ISO TR 12764:2014 Measurement of fluid flow in closed conduits-Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • KS B ISO TR 12764:2015 Measurement of fluid flow in closed conduits — Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • KS B ISO 13359:2014 Measurement of conductive liquid flow in closed conduits — Flanged electromagnetic flowmeters — Overall length
  • KS B ISO 13359:2004 Measurement of conductive liquid flow in closed conduits-Flanged electromagnetic flowmeters-Overall length
  • KS B ISO 13359-2014(2019) Measurement of conductive liquid flow in closed conduits — Flanged electromagnetic flowmeters — Overall length
  • KS C IEC 61660-1:2014 Short-circuit currents in d.c. auxiliary installations in power plants and substations — Part 1: Calculation of short-circuit currents
  • KS B ISO TR 12765:2005 Measurement of fluid flow in closed conduits-Methods using transit-time ultrasonic flowmeters
  • KS C IEC 61660-1-2014(2019) Short-circuit currents in d.c. auxiliary installations in power plants and substations — Part 1: Calculation of short-circuit currents
  • KS B ISO 10790:2003 Measurement of fluid flow in closed conduits-Guidance to the selection, installation and use of Coriolis meters (mass flow, density and volume flow measurements)
  • KS X ISO 12644:2006 Graphic technology-Determination of rheological properties of paste inks and vehicles by the falling rod viscometer
  • KS B 5640-2001(2021) Testing method of multi-path ultrasonic flowmeter
  • KS M ISO 11605:2008 Paper and board-Calibration of variable-area flowmeters
  • KS M ISO 11605:2003 Paper and board-Calibration of variable-area flowmeters
  • KS B ISO 4371:2004 Measurement of liquid flow in open channels by weirs and flumes-End depth method for estimation of flow in non-rectangular channels with a free overfall(approximate method)
  • KS B ISO 4371:2014 Measurement of liquid flow in open channels by weirs and flumes — End depth method for estimation of flow in non-rectangular channels with a free overfall(approximate method)
  • KS C IEC 61660-2-2014(2019) Short-circuit currents in d.c. auxiliary installations in power plants and substations ― Part 2: Calculation of effects
  • KS B ISO 3455:2014 Liquid flow measurement in open channels-Calibration of rotating-element current-meters in straight open tanks
  • KS B ISO 3455:2004 Liquid flow measurement in open channels-Calibration of rotating-element current-meters in straight open tanks
  • KS B 5640-2001(2016) Testing method of multi-path ultrasonic flowmeter
  • KS B ISO 1088:2021 Hydrometry — Velocity-area methods using current-meters —Collection and processing of data for determination of uncertainties in flow measurement
  • KS B ISO 1088:2015 Liquid flow measurement in open channels-Velocity-area methods-Collection and processing of data for determination of errors in measurement
  • KS D 1683-2004 Method for emission spectrochemical analysis of silver ingot
  • KS B ISO 1100-1-2003(2013) Measurement of liquid flow in open channels-Part 1:Establishment and operation of a gauging station
  • KS C IEC 61660-2:2014 Short-circuit currents in d.c. auxiliary installations in power plants and substations ― Part 2: Calculation of effects

Japanese Industrial Standards Committee (JISC), The development of flow meters

  • JIS Z 8766:1989 Methods of flow measurement by vortex flowmeters
  • JIS Z 8764:1980 Method of flow measurement by electromagnetic flowmeters
  • JIS Z 8765:1980 Method of flow measurement by turbine meters
  • JIS B 6803:2015 Pressure regulators and pressure regulators with flow-metering devices for welding, cutting and allied processes
  • JIS B 8572-3:2011 Fuel oil flow meters -- Measuring instruments used in transaction or certification -- Part 3: Small amount fuel oil flow meters
  • JIS B 8572-4:2011 Fuel oil flow meters -- Measuring instruments used in transaction or certification -- Part 4: Stationary fuel oil flow meters
  • JIS B 8572-4:2014 Fuel oil flow meters.Measuring instruments used in transaction or certification.Part 4: Stationary fuel oil flow meters, fuel oil flow meters on road tankers, mobile type fuel oil flow meters
  • JIS B 8572-2:2011 Fuel oil flow meters -- Measuring instruments used in transaction or certification -- Part 2: Small size fuel oil flow meters on road tankers
  • JIS B 7556:2016 Calibration and proving test for gas flowmeter
  • JIS B 7556:2022 Calibration and proving test for gas flowmeter
  • JIS B 7556:2003 Proving methods and procedures for gas flowmeters
  • JIS Z 9061:2016 Applications of statistical and related methods to new technology and product development process -- Robust parameter design (RPD)

Taiwan Provincial Standard of the People's Republic of China, The development of flow meters

  • CNS 14062-2005 Environmental management - Integrating environmental aspects into product design and development

International Organization for Standardization (ISO), The development of flow meters

  • ISO 11631:1998 Measurement of fluid flow - Methods of specifying flowmeter performance
  • ISO 14511:2001 Measurement of fluid flow in closed conduits - Thermal mass flowmeters
  • ISO 14511:2019 Measurement of fluid flow in closed conduits — Thermal mass flowmeters
  • ISO 12764:2017 Measurement of fluid flow in closed conduits — Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • ISO 5168:1978 Measurement of fluid flow; Estimation of uncertainty of a flow-rate measurement
  • ISO 10790:1994 Measurement of fluid flow in closed conduits — Coriolis mass flowmeters
  • ISO 2715:2017 Liquid hydrocarbons. Volumetric measurement by turbine flowmeter. Volumetric measurement by turbine meter systems
  • ISO/TR 6817:1980 Measurement of conductive fluid flowrate in closed conduits — Method using electromagnetic flowmeters
  • ISO 20456:2017 Measurement of fluid flow in closed conduits - Guidance for the use of electromagnetic flowmeters for conductive liquids
  • ISO/TR 12765:1998 Measurement of fluid flow in closed conduits - Methods using transit-time ultrasonic flowmeters
  • ISO 9104:1991 Measurement of fluid flow on closed conduits; methods of evaluating the performance of electromagnetic flow-meters for liquids
  • ISO/DTS 20077-3 Road vehicles — Extended vehicle (ExVe) methodology — Part 3: Upstream process to develop services
  • ISO/TS 20077-3:2023 Road vehicles — Extended vehicle (ExVe) methodology — Part 3: Upstream process to develop services
  • ISO/DTS 20077-3.2:2023 Road vehicles — Extended vehicle (ExVe) methodology — Part 3: Upstream process to develop services
  • ISO 37120:2014 Sustainable development of communities - Indicators for city services and quality of life
  • ISO/TS 15768:2000 Measurement of liquid velocity in open channels - Design, selection and use of electromagnetic current meters
  • ISO 10790:2015 Measurement of fluid flow in closed conduits - Guidance to the selection, installation and use of Coriolis flowmeters (mass flow, density and volume flow measurements)
  • ISO 9951:1993 Measurement of glas flow in closed conduits; turbine meters
  • ISO 7194:1983 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
  • ISO 1928:2009 Solid mineral fuels - Determination of gross calorific value by the bomb calorimetric method and calculation of net calorific value
  • ISO 6817:1992 Measurement of conductive liquid flow in closed conduits; method using electromagnetic flowmeters
  • ISO 3354:2008 Measurement of clean water flow in closed conduits - Velocity-area method using current-meters in full conduits and under regular flow conditions
  • ISO 17089-1:2010 Measurement of fluid flow in closed conduits - Ultrasonic meters for gas - Part 1: Meters for custody transfer and allocation measurement
  • ISO 12242:2012 Measurement of fluid flow in closed conduits - Ultrasonic transit-time meters for liquid
  • ISO 10790:1999 Measurement of fluid flow in closed conduits - Guidance to the selection, installation and use of Coriolis meters (mass flow, density and volume flow measurements)
  • ISO 11605:1995 Paper and board - Calibration of variable-area flowmeters
  • ISO 7194:2008 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
  • ISO 5167-5:2022 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full — Part 5: Cone meters
  • ISO 5167-6:2022 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full — Part 6: Wedge meters
  • ISO 13359:1998 Measurement of conductive liquid flow in closed conduits - Flanged electromagnetic flowmeters - Overall length
  • ISO 7858-1:1985 Measurement of water flow in closed conduits; Meters for cold potable water; Combination meters; Part 1 : Specifications
  • ISO 748:2007 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats
  • ISO 17089-2:2012 Measurement of fluid flow in closed conduits - Ultrasonic meters for gas - Part 2: Meters for industrial applications
  • ISO/DIS 24062 Measurement of fluid flow in closed conduits — Clamp-on ultrasonic transit-time meters for liquids and gases
  • ISO/FDIS 24062:2023 Measurement of fluid flow in closed conduits — Clamp-on ultrasonic transit-time meters for liquids and gases
  • ISO 22127:2019 Dosimetry with radiophotoluminescent glass dosimeters for dosimetry audit in MV X-ray radiotherapy
  • ISO 13517:2013 Metallic powders.Determination of flowrate by means of a calibrated funnel (Gustavsson flowmeter)

未注明发布机构, The development of flow meters

  • BS ISO 11631:1998(1999) Measurement of fluid flow — Methods of specifying flowmeter performance
  • BS ISO/TR 11974:1997(1999) Measurement of liquid flow in open channels — Electromagnetic current meters
  • BS 7405:1991(2000) Guide to Selection and application of flowmeters for the measurement of fluid flow in closed conduits
  • BS ISO/TR 12764:1997(1999) Measurement of fluid flow in closed conduits — Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross - section conduits running full
  • BS EN ISO 6817:1997(1999) Measurement of conductive liquid flow in closed conduits — Method using electromagnetic flowmeters
  • BS ISO TS 15768:2000 Measurement of liquid velocity in open channels - Design , selection and use of electromagnetic current meters
  • SAE AS9104/3-200703 Requirements for Aviation, Space, and Defense Auditor Training, Development, Competence, and Authentication
  • BS ISO 13359:1998(1999) Measurement of conductive liquid flow in closed conduits — Flanged electromagnetic flowmeters — Overall length
  • DIN EN 13465:2004 Ventilation of buildings – calculation method for determining air volume flows in apartments

British Standards Institution (BSI), The development of flow meters

  • BS ISO 11631:1998 Measurement of fluid flow. Methods of specifying flowmeter performance
  • BS ISO 11631:1999 Measurement of fluid flow - Methods of specifying flowmeter performance
  • 14/30311660 DC BS EN 9139. Aerospace Series. Quality Management Systems. Development of Process-Based Bodies of Knowledge
  • BS ISO/TS 15768:2000 Measurement of liquid velocity in open channels - Design, selection and use of electromagnetic current meters
  • BS ISO 14511:2019 Tracked Changes. Measurement of fluid flow in closed conduits. Thermal mass flowmeters
  • BS ISO/TR 12765:1998 Measurement of fluid flow in closed conduits. Methods using transit-time ultrasonic flowmeters
  • PD 7974-1-2003 Application of fire safety engineering principles to the design of buildings. Initiation and development of fire within the enclosure of origin (Sub-system 1)
  • BS EN 61660-1:1997 Short-circuit currents in d.c auxiliary installations in power plants and substations. Calculation of short-circuit currents
  • BS EN ISO 20456:2019 Measurement of fluid flow in closed conduits. Guidance for the use of electromagnetic flowmeters for conductive liquids
  • BS 7834:1995 Specification for turbine meters used for the measurement of gas flow in closed conduits
  • BS ISO TR 12764:1997 Measurement of fluid flow in closed conduits - Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • BS ISO TR 12764:1998 Measurement of fluid flow in closed conduits. Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • BS ISO 37120:2014 Sustainable development of communities. Indicators for city services and quality of life
  • BS ISO 10790:2015 Measurement of fluid flow in closed conduits. Guidance to the selection, installation and use of Coriolis flowmeters (mass flow, density and volume flow measurements)
  • BS ISO 19344:2015 Milk and milk products. Starter cultures, probiotics and fermented products. Quantification of lactic acid bacteria by flow cytometry
  • BS ISO 13359:1998 Measurement of conductive liquid flow in closed conduits - Flanged electromagnetic flowmeters - Overall length
  • BS EN 61660-2:1997 Short-circuit currents in d.c. auxiliary installations in power plants and substations. Calculation of effects
  • 16/30323541 DC BS ISO 20456. Measurement of fluid flow in closed conduits. Guidance for the use of electromagnetic flowmeters for conductive liquids
  • BS 3680-5:1992 Measurement of liquid flow in open channels - Slope area method of estimation
  • BS EN 17526:2021 Gas meter. Thermal-mass flow-meter based gas meter
  • BS ISO 12764:2017 Tracked Changes. Measurement of fluid flow in closed conduits. Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • BS ISO 7194:2008 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 statics tubes
  • BS ISO/TR 12765:1999 Measurement of fluid flow in closed conduits. Methods using transit-time ultrasonic flowmeters
  • PD 7974-1:2019 Application of fire safety engineering principles to the design of buildings. Initiation and development of fire within the enclosure of origin (Sub-system 1)
  • BS ISO 10790:1999 Measurement of fluid flow in closed conduits. Guidance to the selection, installation and use of Coriolis meters (mass flow, density and volume flow measurements)
  • BS EN 16074:2019 Paints and varnishes. Determination of non-volatile-matter content and spreading rate of coil coating materials
  • BS ISO 20765-2:2015 Natural gas. Calculation of thermodynamic properties. Single-phase properties (gas, liquid, and dense fluid) for extended ranges of application
  • BS ISO 3354:2008 Measurement of clean water flow in closed conduits - Velocity-area method using current-meters in full conduits and under regular flow conditions
  • BS EN ISO 13517:2013 Metallic powders. Determination of flowrate by means of a calibratedfunnel (Gustavsson flowmeter)
  • BS 1042 Sec.2.4:1989 Measurement of fluid flow in closed conduits. Velocity-area methods. Method of measurement of clean water flow using current meters in full conduits and under regular flow conditions
  • PD ISO/TS 3814:2014 Standard tests for measuring reaction-to-fire of products and materials. Their development and application
  • 20/30407324 DC BS EN 17526. Gas meters. Thermal-mass flow-meter based gas meter
  • BS 1042 Sec.2.3:1984 Measurement of fluid flow in closed conduits. Velocity area methods. Methods of flow measurement in swirling or asymmetric flow conditions in circular ducts by means of current-meters or Pitot static tubes
  • BS EN ISO 8316:1988 Method of liquid flow in closed conduits - Method by collection of the liquid in a volumetric tank

API - American Petroleum Institute, The development of flow meters

ATIS - Alliance for Telecommunications Industry Solutions, The development of flow meters

  • T1.508-1998 Telecommunications - Loss Plan for Evolving Digital Networks

Association Francaise de Normalisation, The development of flow meters

  • NF X10-106:1983 Mesure de débit des fluides - Calcul de l'erreur limite sur une mesure de débit
  • NF EN 17472:2022 Contribution des ouvrages de construction au développement durable - Évaluation de la contribution au développement durable des ouvrages de génie civil - Méthodes de calcul
  • XP ISO/TS 5660-5:2020 Essais de réaction au feu - Débit calorifique, taux de dégagement de fumée et taux de perte de masse - Partie 5 : débit calorifique (méthode au calorimètre à cône) et taux de dégagement de fumée (mesurage dynamique) dans des atmosphères pau...
  • NF X06-046:1985 Application of statistics. Treatment of measurement results. Errors propagation.
  • NF X10-121:1993 Measurement of fluid flow in closed conduits. Methods of evaluating the performance of electromagnetic flow-meters for liquids.
  • NF X10-120:1995 Measurement of conductive liquid flow in closed conduits. Method using electromagnetic flow meters.
  • NF X10-121*NF EN ISO 20456:2019 Measurement of fluid flow in closed conduits - Guidance for the use of electromagnetic flowmeters for conductive liquids
  • 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
  • NF C93-881:1990 Optical fibre setting for local area network - Quality assurance and state of the art
  • NF X10-320:1989 Liquid flow measurement in open channels. Rotating element current-meters.
  • NF E17-307*NF EN 17526:2021 Gas meter - Thermal-mass flow-meter based gas meter
  • NF H44-026:1991 Aerosol generators. Discharge rate of valves.
  • NF X10-111:1988 Measurement of clean water flow in closed conduits. Velocity-area method using current-meters in full conduits and under regular flow conditions.
  • NF EN 61660-1:1997 Courants de court-circuit dans les installations auxiliaires alimentées en courant continu dans les centrales et les postes - Partie 1 : calcul des courants de court-circuit
  • NF T37-002*NF EN 16074:2019 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials
  • NF M08-038*NF ISO 2715:2020 Liquid hydrocarbons - Volumetric measurement by turbine flowmeter
  • NF EN 17526:2021 Compteurs de gaz - Compteur de gaz basé sur un débitmètre massique par effet thermique
  • NF X10-102-5*NF EN ISO 5167-5:2016 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 5 : cone meters
  • NF X10-301:2009 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats.
  • CWA 16046:2009 Adoption programme for increased electronic invoicing in European business processes
  • NF EN 16627:2015 Contribution des ouvrages de construction au développement durable - Évaluation de la performance économique des bâtiments - Méthodes de calcul
  • NF EN 15978:2012 Contribution des ouvrages de construction au développement durable - Évaluation de la performance environnementale des bâtiments - Méthode de calcul
  • NF EN 16309/IN1:2014 Contribution des ouvrages de construction au développement durable - Évaluation de la performance sociale des bâtiments - Méthodes de calcul
  • NF EN 16309+A1:2014 Contribution des ouvrages de construction au développement durable - Évaluation de la performance sociale des bâtiments - Méthodes de calcul
  • NF EN ISO 5167-6:2022 Mesurage de débit des fluides au moyen d'appareils déprimogènes insérés dans des conduites en charge de section circulaire - Partie 6 : débitmètres à coin
  • NF C10-104*NF EN 61660-1:1997 Short-circuit currents in d.c. auxiliary installations in power plants and substations - Part 1 : calculation of short-circuit
  • NF M07-004*NF EN ISO 6246:2018 Petroleum products - Gum content of fuels - Jet evaporation method
  • NF C10-105*NF EN 61660-2:1997 Short-circuit currents in d.c. auxiliary installations in power plants and substations. Part 2 : calculation of effects.
  • NF EN 1359:2017 Compteurs de gaz - Compteurs de volume de gaz à parois déformables
  • NF A95-114:2013 Metallic powders - Determination of flowrate by means of a calibrated funnel (Gustavsson flowmeter)

American Society of Mechanical Engineers (ASME), The development of flow meters

HU-MSZT, The development of flow meters

Group Standards of the People's Republic of China, The development of flow meters

  • T/ZQBJXH 25-2022 Guidelines for the preparation of development planning for the improvement of measurement assurance capabilities of small and medium-sized enterprises
  • T/JXAS 027-2023 Demonstration zone of green and integrated ecological development of the yangtze river delta specification for measurement of oil filling station

German Institute for Standardization, The development of flow meters

  • DIN 43864:1986 Electricity meters; current interface for transmitting pulses from a pulsing meter to a tariff metering device
  • DIN 50055:1989-03 Light measuring system for testing smoke development
  • DIN 19204:1976 Flow measurement; ranges, divisions and inscriptions of scales for flow indicators
  • DIN EN ISO 20456:2020-09 Measurement of fluid flow in closed conduits - Guidance for the use of electromagnetic flowmeters for conductive liquids (ISO 20456:2017); German version EN ISO 20456:2019
  • DIN 10255:1992 Analysis of tobacco and tobacco products; determination of flow rates of gas using the soap film bubble flowmeter
  • DIN EN ISO 20456:2020 Measurement of fluid flow in closed conduits - Guidance for the use of electromagnetic flowmeters for conductive liquids (ISO 20456:2017)
  • DIN EN 29104:1993 Measurement of fluid flow in closed conduits; methods of evaluating the performance of electromagnetic flow-meters for liquids (ISO 9104:1991); German version EN 29104:1993
  • DIN EN 17526:2020 Gas meters - Thermal-mass flow-meter based gas meter; German and English version prEN 17526:2020
  • DIN EN 17526:2020-07 Gas meters - Thermal-mass flow-meter based gas meter; German and English version prEN 17526:2020 / Note: Date of issue 2020-05-29
  • DIN ISO 13359:1998 Measurement of conductive liquid flow in closed conduits - Flanged-type electromagnetic flowmeters - Overall length (ISO 13359:1998)
  • DIN EN 16074:2019 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials
  • DIN EN 16074:2019-12 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials; German version EN 16074:2019

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, The development of flow meters

  • GB/T 20727-2006 Measurement of fluid flow in closed conduits Thermal mass flowmeters
  • GB/T 18940-2003 Measurement of gas flow in closed conduits--Turbine meters
  • GB/T 18659-2023 Guidelines for the use of electromagnetic flowmeters for measuring fluid flow in closed pipes
  • GB/T 25922-2023 Measurement of fluid flow in closed pipes The flow is measured with a vortex flowmeter installed in a pipe of circular cross-section filled with fluid
  • 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 18660-2002 Measurement of conductive liquid flow in closed conduits--Method using electromagnetic flowmeters
  • GB/T 20728-2006 Measurement of fluid flow in closed conduits Guidance to the selection installation and use of Coriolis meters
  • GB/T 18659-2002 Measurement of fluid flow in closed conduits--Methods of evaluating the performance of electromagnetic flow-meters for liquids
  • GB/T 20729-2006 Measurement of conductive liquid flow in closed conduits Flanged electromagnetic flowmeters Overall length
  • GB/T 29818-2013 Mass flow meter based on HART protocol general specification

U.S. Air Force, The development of flow meters

KR-KS, The development of flow meters

  • KS B ISO TR 12764-2014 Measurement of fluid flow in closed conduits — Flowrate measurement by means of vortex shedding flowmeters inserted in circular cross-section conduits running full
  • KS B ISO 748-2021 Hydrometry — Measurement of liquid flow in open channels using current-meters or floats
  • KS B ISO TR 11627-2014 Measurement of liquid flow in open channels — Computing stream flow using an unsteady flow model
  • KS B ISO 10790-2003(2023) Measurement of fluid flow in closed conduits-Guidance to the selection, installation and use of Coriolis meters (mass flow, density and volume flow measurements)
  • KS M ISO 23811-2012 Paints and varnishes-Determination of percentage volume of non-volatile matter by measuring the non-volatile matter content and the density of the coating material, and calculation of the theoretical
  • KS B ISO 18320-2022 Hydrometry — Measurement of liquid flow in open channels — Determination of the stage–discharge relationship
  • KS E ISO 7194-1-2018(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
  • KS M ISO 11605-2003 Paper and board-Calibration of variable-area flowmeters
  • KS B ISO 1088-2021 Hydrometry — Velocity-area methods using current-meters —Collection and processing of data for determination of uncertainties in flow measurement

Indonesia Standards, The development of flow meters

  • SNI 8066-2015 Tata cara pengukuran debit aliran sungai dan saluran terbuka menggunakan alat ukur arus dan pelampung

US-CFR-file, The development of flow meters

  • CFR 32-79.1-2014 National defense. Part79:Child development programs (cdps). Section79.1:Purpose.
  • CFR 40-1065.640-2014 Protection of Environment. Part1065:Engine-testing procedures. Section1065.640:Flow meter calibration calculations.
  • CFR 13-304.1-2014 Business credit and assistance. Part304:Economic development districts. Section304.1:Designation of economic development districts: regional eligibility.
  • CFR 40-1065.225-2014 Protection of Environment. Part1065:Engine-testing procedures. Section1065.225:Intake-air flow meter.
  • CFR 40-1065.230-2014 Protection of Environment. Part1065:Engine-testing procedures. Section1065.230:Raw exhaust flow meter.
  • CFR 7-1485.19-2014 Agriculture. Part1485:Grant agreements for the development of foreign markets for U.S agricultural commodities. SubpartB:Market access program. Section1485.19:Advances.

International Telecommunication Union (ITU), The development of flow meters

  • ITU-R SM.1370-1-2001 Design guidelines for developing advanced automated spectrum management systems
  • ITU-T G.999.1 AMD 1-2014 Extension for flow control on the PHY-to-LINK data stream over gamma reference point
  • ITU-R REPORT M.2078 ARABIC-2006 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced
  • ITU-R REPORT M.2078 CHINESE-2006 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced
  • ITU-R REPORT M.2078 RUSSIAN-2006 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced
  • ITU-R RESOLUTION 8-1 FRENCH-2000 Radiowave propagation studies and measurement campaigns in developing countries
  • ITU-R RESOLUCION 8-1 SPANISH-2000 Radiowave propagation studies and measurement campaigns in developing countries
  • ITU-R RESOLUTION 8-1 ARABIC-2000 Radiowave propagation studies and measurement campaigns in developing countries
  • ITU-R RESOLUTION 8-1 CHINESE-2000 Radiowave propagation studies and measurement campaigns in developing countries
  • ITU-R M.1768 FRENCH-2006 Methodology for calculation of spectrum requirements for the future development of the terrestrial component of IMT-2000 and systems beyond IMT-2000 M閠hodologie de calcul des exigences de spectre pour le d関eloppement futur de la composante de Terre des
  • ITU-T RESOLUTION 58-2008 Encourage the creation of national computer incident response teams, particularly for developing countries
  • ITU-R RESOLUTION 8-1-2000 Radiowave propagation studies and measurement campaigns in developing countries
  • ITU-R M.1768-2006 Methodology for calculation of spectrum requirements for the future development of the terrestrial component of IMT-2000 and systems beyond IMT-2000
  • ITU-T A.6-2012 Cooperation and exchange of information between the ITU Telecommunication Standardization Sector and national and regional standards development organizations (Study Group Assembly)

GB-REG, The development of flow meters

American Concrete Institute, The development of flow meters

  • ACI SP-181-1998 Recent Developments in the Design and Specification of Concrete Pavement Systems

ACI - American Concrete Institute, The development of flow meters

  • ACI SP-181-1999 Recent Developments in the Design and Specification of Concrete Pavement Systems
  • ACI SP-287 CD-2012 Recent Development in Reinforced Concrete Slab Analysis@ Design@ and Serviceability

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, The development of flow meters

  • 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
  • GB/T 34041.2-2017 Measurement of fluid flow in closed conduits—Ultrasonic meters for gas—Part 2: Meters for industrial applications
  • GB/T 35138-2017 Measurement of fluid flow in closed conduits—Ultrasonic transit-time meters for liquid

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector, The development of flow meters

  • REPORT M.2078-2006 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced
  • ITU-R M.1768 SPANISH-2006 Metodología de cálculo de las necesidades de espectro para el futuro desarrollo del componente terrenal de IMT-2000 y sistemas posteriores
  • RESOLUTION 8-1-2000 Radiowave propagation studies and measurement campaigns in developing countries

RU-GOST R, The development of flow meters

  • GOST R 50779.90-2014 Statistical methods. Requirements to information about software, used in development of normative documents
  • GOST 21011.7-1980 High-voltage kenotrons. The emission current measurement method
  • GOST 26969-1986 Standard orifice plates for flowmeters. Specifications
  • GOST R ISO 37120-2015 Sustainable development of communities. Indicators for city services and quality of life
  • GOST R 56676-2015 Gas and condensate field development project. Volumetric method of gas and gas-condensate reserves estimation. Main technical requirements
  • GOST R ISO 21747-2010 Statistical methods. Process performance and capability statistics for measured quality characteristics
  • GOST 18604.6-1974 Transistors. Method for measuring emitter reverse current
  • GOST R 8.886-2015 State system for ensuring the uniformity of measurements. State verification schedule for means of measuring the velocity of air flow

Canadian Standards Association (CSA), The development of flow meters

  • CSA S408-1981-1981 Guidelines for the Development of Limit States Design First Edition; Update No 1
  • CAN/CSA-ISO 37120:2015 Sustainable development of communities - Indicators for city services and quality of life (First Edition)

US-HUD, The development of flow meters

  • HUD 24 CFR PT 52-2009 INTERGOVERNMENTAL REVIEW OF DEPARTMENT OF HOUSING AND URBAN DEVELOPMENT PROGRAMS AND ACTIVITIES
  • HUD 24 CFR PT 52-2010 INTERGOVERNMENTAL REVIEW OF DEPARTMENT OF HOUSING AND URBAN DEVELOPMENT PROGRAMS AND ACTIVITIES

Professional Standard - Aerospace, The development of flow meters

  • QJ 1794-1989 Uncertainty Estimation Method for Steady-state Flow Measurement of Liquid Rocket Engine

IN-BIS, The development of flow meters

Underwriters Laboratories (UL), The development of flow meters

  • UL SUBJECT 327A-2006 OUTLINE OF INVESTIGATION FOR INFERENTIAL TYPE RESIDENTIAL WATER FLOW METERS (Issue Number: 1)
  • UL SUBJECT 327A-2007 OUTLINE OF INVESTIGATION FOR INFERENTIAL TYPE RESIDENTIAL WATER FLOW METERS (Issue Number: 2)
  • UL SUBJECT 327B-2010 OUTLINE OF INVESTIGATION FOR ULTRASONIC AND MAGNETIC TYPE RESIDENTIAL WATER FLOW METERS Issue Number 1

Association of German Mechanical Engineers, The development of flow meters

American Nuclear Society (ANS), The development of flow meters

  • ANS 10.5-2006 Accommodating user needs in scientific and engineering computer software development

European Committee for Standardization (CEN), The development of flow meters

  • EN ISO 20456:2019 Measurement of fluid flow in closed conduits - Guidance for the use of electromagnetic flowmeters for conductive liquids (ISO 20456:2017)
  • FprEN 17526-2021 Gas meter - Thermal-mass flow-meter based gas meter
  • EN 17526:2021 Gas meter - Thermal-mass flow-meter based gas meter
  • EN ISO 5167-6:2022 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 6: Wedge meters (ISO 5167-6:2022)
  • EN ISO 748:2000 Measurement of Liquid Flow in Open Channels - Velocity-Area Methods ISO 748:1997
  • 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 6817:1995 Measurement of Conductive Liquid Flow in Closed Conduits - Method Using Electromagnetic Flowmeters ISO 6817: 1992
  • EN ISO 13517:2020 Metallic powders - Determination of flow rate by means of a calibrated funnel (Gustavsson flowmeter) (ISO 13517:2020)
  • EN ISO 13517:2013 Metallic powders - Determination of flowrate by means of a calibrated funnel (Gustavsson flowmeter)

Danish Standards Foundation, The development of flow meters

  • DS/EN 29104:1994 Measurement of fluid flow in closed conduits - Methods of evaluating the performance of electromagnetic flow-meters for liquids
  • DS/ISO 9104:1994 Measurement of fluid flow in closed conduits - Methods of evaluating the performance of electromagnetic flow-meters for liquids
  • DS/EN 29104:1993 Measurement of fluid flow in closed conduits. Methods of evaluating the performance of electromagnetic flow-meters for liquids
  • DS/EN ISO 23811:2009 Paints and varnishes - Determination of percentage volume of non-volatile matter by measuring the non-volatile matter content and the density of the coating material, and calculation of the theoretical spreading rate
  • DS/EN ISO 748:2008 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats
  • DS/EN ISO 6817:1996 Measurement of conductive liquid flow in closed conduits - Method using electromagnetic flowmeters
  • DS/EN 61660-1/Corr.:2001 Short-circuit currents in d.c. auxiliary installations in power plants and substations - Part 1: Calculation of short-circuit currents
  • DS/EN 61660-1:1998 Short-circuit currents in d.c. auxiliary installations in power plants and substations - Part 1: Calculation of short-circuit currents
  • DS/EN 16074:2011 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials

American Gas Association, The development of flow meters

  • AGA REPORT 3-4-1992 Orifice Metering of Natural Gas and Other Related Hydrocarbon Fluids Part: 4 Background, Development, Implementation Procedure, and Subroutine Documentation for Empirical Flange- Tapped Discharge Coefficient Equation (Third Edition; XQ9211; 2nd printing:

CN-STDBOOK, The development of flow meters

  • 图书 3-9308 The Power of Standards——An example of promoting high-quality development through standardization in Guangdong Province
  • 图书 3-8754 The practice and innovation of quality development--the leap from "Shenzhen speed" to "Shenzhen quality"

TR-TSE, The development of flow meters

  • TS 3072-1978 Measurement Of Clean Water Flow In Closed Conduits - Velocity - Area Method Using Current - Meters
  • TS 2678-1977 Determination of Gross Calorific Value By The Calorimetric Bomb Method And Calculation of Net Calorific Value

AT-ON, The development of flow meters

  • ONORM M 5880-1998 Flow measurement in wastewater treatment plants - Venturi flumes and inductive flowmeters
  • ONORM EN 29104-1993 Measurement of fluid flow in closed conduits - Methods of evaluating the Performance of electromagnetic flow-meters forliquids (ISO 9104:1991)

ES-UNE, The development of flow meters

  • UNE-EN ISO 20456:2021 Measurement of fluid flow in closed conduits - Guidance for the use of electromagnetic flowmeters for conductive liquids (ISO 20456:2017)
  • UNE-EN 17526:2022 Gas meter - Thermal-mass flow-meter based gas meter
  • UNE-EN 61660-1 CORR:1999 SHORT-CIRCUIT CURRENTS IN D.C. AUXILIARY INSTALLATIONS IN POWER PLANTS AND SUBSTATIONS. PART 1: CALCULATION OF SHORT-CIRCUIT CURRENTS.
  • UNE-EN 16074:2020 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials
  • UNE-EN ISO 5167-5:2016 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 5: Cone meters (ISO 5167-5:2016)
  • UNE-EN ISO 5167-6:2021 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 6: Wedge meters (ISO 5167-6:2019)

CZ-CSN, The development of flow meters

  • 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 35 8771-1970 Thyristors. Method of measuring gate trigger voltage and gate trigger current
  • CSN 25 7866-1967 Gas meters with rotary pistons
  • CSN 25 7830-1964 Flow-meters with glass tube
  • CSN 35 8757 Cast.4-1985 Transistors. Methods of measuring collector cut-off current, emitter cut-off current and collector-emitter cut-off current

IEEE - The Institute of Electrical and Electronics Engineers@ Inc., The development of flow meters

  • IEEE 251-1984 GUIDE: TEST PROCEDURES FOR DIRECT-CURRENT TACHOMETER GENERATORS

Standard Association of Australia (SAA), The development of flow meters

  • AS 3778.2.4:2007 Measurement of water flow in open channels - General - Estimation of uncertainty of a flow rate measurement
  • AS 3778.2.4:2001 Measurement of water flow in open channels Part 2.4: General--Estimation of uncertainty of a flow-rate measurement
  • AS 4250.4:1995 Liquid hydrocarbons - Dynamic measurement - Proving systems for volumetric meters - Temperature corrections in volumetric calibration by water transfer method
  • AS 3778.4.10:2022 Measurement of water flow in open channels, Part 4.10: Measurement using flow gauging structures — End-depth method for estimation of flow in channels with a free overfall (ISO 18481:2017, IDT)
  • AS ISO 5167.5:2023 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full, Part 5: Cone meters
  • AS ISO 5167.6:2023 Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full, Part 6: Wedge meters

National Aeronautics and Space Administration (NASA), The development of flow meters

  • NASA-TM-X-3292-1975 Measurements of farfield sound generation from a flow-excited cavity
  • NASA NACA-TN-2629-1952 Analytical and experimental investigation of fully developed turbulent flow of air in a smooth tube with heat transfer with variable fluid properties
  • NASA-CR-2270-1973 Extended hydrodynamic theory of the peak and minimum pool boiling heat fluxes
  • NASA NPD 1360.2 REV A-2004 INITIATION AND DEVELOPMENT OF INTERNATIONAL COOPERATION IN SPACE AND AERONAUTICS PROGRAMS (REVALIDATED 3/29/04)
  • NASA-TN-D-552-1960 Studies of the Retardation Force Developed on an Aircraft Tire Rolling in Slush or Water

IX-EU/EC, The development of flow meters

  • 87/590/EEC-1987 Council Decision Relating to a Research and Development Programme in the Field of Science and Technology for Development (1987-91)
  • COM(2007) 607 FINAL-2007 COMMUNICATION FROM THE COMMISSION Freight Transport Logistics Action Plan

Lithuanian Standards Office , The development of flow meters

  • LST EN 29104-2001 Measurement of fluid flow in closed conduits - Methods of evaluating the performance of electromagnetic flow-meters for liquids (ISO 9104:1991)
  • LST EN ISO 748:2008 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats (ISO 748:2007)
  • LST EN ISO 6817:2001 Measurement of conductive liquid flow in closed conduits - Methods using electromagnetic flow-meters (ISO 6817:1992)
  • LST EN 16074-2011 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials
  • LST EN 61660-1-2001 Short-circuit currents in d.c. auxiliary installations in power plants and substations. Part 1: Calculation of short-circuit currents (IEC 61660-1:1997)

国家市场监督管理总局、中国国家标准化管理委员会, The development of flow meters

  • GB/T 20728-2021 Measurement of fluid flow in closed conduits—Guidance to the selection, installation and use of Coriolis flowmeters
  • GB/T 41340.1-2022 Technical specifications for productivity calculation of ocean energy power station—Part 1: Tidal current energy

AENOR, The development of flow meters

  • UNE-EN 29104:1996 MEASUREMENT OF FLUID FLOW IN CLOSED CONDUITS. METHODS OF EVALUATING THE PERFORMANCE OF ELECTROMAGNETIC FLOW-METERS FOR LIQUIDS. (ISO 9104:1991).
  • UNE-EN ISO 748:2009 Hydrometry - Measurement of liquid flow in open channels using current-meters or floats (ISO 748:2007)
  • UNE-EN ISO 6817:1996 MEASUREMENT OF CONDUCTIVE LIQUID FLOW IN CLOSED CONDUITS. METHOD USING ELECTROMAGNETIC FLOWMETERS. (ISO 6817:1992).
  • UNE-EN 61660-1:1999 SHORT-CIRCUIT CURRENTS IN D.C. AUXILIARY INSTALLATIONS IN POWER PLANTS AND SUBSTATIONS. PART 1: CALCULATION OF SHORT-CIRCUIT CURRENTS.
  • UNE-EN 16074:2011 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials
  • UNE-EN 61660-2:1999 SHORT-CIRCUIT CURRENTS IN D.C. AUXILIARY INSTALLATIONS IN POWER PLANTS AND SUBSTATIONS. PART 2: CALCULATION OF EFFECTS.
  • UNE-IEC/TR 61660-3:2005 IN Short-circuit currents in d.c. auxiliary installations in power plants and substations - Part 3: Examples of calculations.

Professional Standard - Petroleum, The development of flow meters

  • SY/T 6143-1996 Standard orifice measurement method for natural gas flow
  • SY/T 6999-2014 General requirements for flow meters on-line verification with a traveling gas flow standard facility
  • SY 6999-2014 General requirements for on-line verification of flowmeters with mobile gas flow standard devices

NL-NEN, The development of flow meters

  • NEN-ISO 9104:1994 Measurement of fluid flow in xlosed conduits. Methods of evaluating the performance of electromagnetic flow-meters for liquids (ISO 9104:1991)

CU-NC, The development of flow meters

Institute of Electrical and Electronics Engineers (IEEE), The development of flow meters

  • IEEE No 251-1963 IEEE Proposed Test Procedure for Direct Current Tachometer Generators
  • ANSI/IEEE Std 251-1984 IEEE Guide: Test Procedures for Direct-Current Tachometer Generators
  • IEEE 946-2004 Recommended Practice for the Design of DC Auxiliary Power Systems for Generating Stations
  • IEEE 946-1992 Recommended practice for the design of DC auxiliary power systems for generating stations
  • IEEE Std 946-1992 IEEE Recommended Practice for the Design of DC Auxiliary Power Systems for Generating Stations

International Federation of Trucks and Engines, The development of flow meters

VN-TCVN, The development of flow meters

  • TCVN 6816-2001 Measurement of fluid flow in closed conduits.Methods using transit-time ultrasonic flowmeters
  • TCVN 200-2011 Solid mineral fuels.Determination of gross calorific value by the bomb calorimetric method and calculation of net calorific value

United States Navy, The development of flow meters

  • NAVY MIL-HDBK-781 A-1996 RELIABILITY TEST METHODS, PLANS, AND ENVIRONMENTS FOR ENGINEERING, DEVELOPMENT QUALIFICATION, AND PRODUCTION, HANDBOOK FOR

Aerospace Industries Association/ANSI Aerospace Standards, The development of flow meters

American Water Works Association (AWWA), The development of flow meters

YU-JUS, The development of flow meters

  • JUS U.C5.092-1994 Liquid flow measurement in open channels by weirs and flumes - End-depth method for estimation of flow in rectangular channels with a free overfall

Military Standard of the People's Republic of China-General Armament Department, The development of flow meters

  • GJB 1808-1993 Calibration method of vacuum gauge dynamic flow method

Professional Standard - Machinery, The development of flow meters

  • JB/T 10181.21-2014 Electric cables.Calculation of the current rating.Part 21: Thermal resistance.Calculation of thermal resistance

CEN - European Committee for Standardization, The development of flow meters

  • PREN 16074-2018 Paints and varnishes - Determination of non-volatile-matter content and spreading rate of coil coating materials

SAE - SAE International, The development of flow meters

CL-INN, The development of flow meters

American Petroleum Institute (API), The development of flow meters

ITU-T - International Telecommunication Union/ITU Telcommunication Sector, The development of flow meters

  • ITU-T X.760-2018 The measurement framework for the statistical indicators of website traffic (Study Group 2)

European Association of Aerospace Industries, The development of flow meters

  • AECMA PREN 9100-2000 Aerospace Series Quality Systems Model for Quality Assurance in Design, Development, Production, Installation and Servicing Edition P 1; Supersedes PREN 9000-1, Edition P 3

CENELEC - European Committee for Electrotechnical Standardization, The development of flow meters

  • EN 60534-2-1:1998 Industrial-Process Control Valves - Part 2-1: Flow Capacity - Sizing Equations for Fluid Flow under Installed Conditions




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