Flow rate versus peak area
Flow rate versus peak area, Total:87 items.
The international standard classification for "Flow rate versus peak area" includes: .
The Chinese standard classification for "Flow rate versus peak area" includes: Mechanics Measurement .
National Metrological Verification Regulations of the People's Republic of China
- JJG 835-1993 Flowrate Facilities by Velocity-Area Method
International Organization for Standardization (ISO)
- ISO 748:1997 Measurement of liquid flow in open channels - Velocity-area methods
- ISO 748:1973 Title missing - Legacy paper document
- 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 748:1979 Liquid flow measurement in open channels; Velocity-area methods
- ISO 3354:1975 Measurement of clean water flow in closed conduits — Velocity-area method using current-meters
- ISO/TR 7178:1983 Liquid flow measurement in open channels; Velocity-area methods; Investigation of total error
- ISO 1088:1985 Liquid flow measurement in open channels; Velocity-area methods; Collection and processing of data for determination of errors in measurement
- ISO 7145:1982 Determination of flowrate of fluids in closed conduits of circular cross-section; Method of velocity measurement at one point of the cross-section
- 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 3966:1977 Measurement of fluid flow in closed conduits; Velocity area method using Pitot static tubes
- ISO/TR 9823:1990 Liquid flow measurement in open channels; velocity-area method using a restricted number of verticals
- ISO 3966:2020 Measurement of fluid flow in closed conduits — Velocity area method using Pitot static tubes
- ISO 3354:1988 Measurement of clean water flow in closed conduits; velocity-area method using current-meters in full conduits and under regular flow conditions
- ISO 748:2021 Hydrometry — Measurement of liquid flow in open channels — Velocity area methods using point velocity measurements
TR-TSE
- TS 2236-1976 LIQUID FLOLW MEASUREMENT ?N ?PEN CHANNELS VELOCITY - AREA METHODS
- TS 3072-1978 Measurement Of Clean Water Flow In Closed Conduits - Velocity - Area Method Using Current - Meters
- TS 1857-1975 LIQUID FLOW MEASUREMENT ?N ?PEN CHANNELS — VELOCITY - AREA METHODS — COLLECTION OF DATA FOR DETERMINATION OF ERRORS ?N MEASUREMENT
Korean Agency for Technology and Standards (KATS)
- KS B ISO 748:2015 Measurement of liquid flow in open channels-Velocity-area methods
- KS B ISO 748:2003 Measurement of liquid flow in open channels-Velocity-area methods
- KS F 2010-2013 Method of measurements for flow discharge in open channels ? Velocity-area methods
- KS B ISO 748-2015 Measurement of liquid flow in open channels-Velocity-area methods
- KS F 2010-2013(2018) Method of measurements for flow discharge in open channels?Velocity-area methods
- KS F 2010-2023 Method of measurements for flow discharge in open channels ? Velocity-area methods
- KS B ISO TR 9823-2003(2013) Liquid flow measurement in open channels-Velocity-area method using a restricted number of verticals
- KS E ISO 7194-1:2018 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 B 5323-2009 Variable area flowmeters
- KS B ISO TR 7178:2015 Liquid flow measurement in open channels-Velocity-area methods-Investigation of total error
- KS E ISO 7194-1-2018 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 B ISO TR 7178:2003 Liquid flow measurement in open channels-Velocity-area methods-Investigation of total error
- KS B ISO TR 7178-2015 Liquid flow measurement in open channels-Velocity-area methods-Investigation of total error
- KS B ISO TR 7178-2003(2013) Liquid flow measurement in open channels-Velocity-area methods-Investigation of total error
- KS B 5323-2019 Variable area flowmeters
- KS B 5323-2024 Variable area flowmeters
- KS B 5323-1995 Variable area flowmeters
- KS B 5323-2009(2019) Variable area flowmeters
- KS E ISO 7194-1-2023 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 E ISO 7194-1:2003 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 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 B ISO TR 9823:2003 Liquid flow measurement in open channels-Velocity-area method using a restricted number of verticals
- KS B ISO TR 9823:2015 Liquid flow measurement in open channels-Velocity-area method using a restricted number of verticals
British Standards Institution (BSI)
- BS 1042-2.4:1989(1998) Measurement of clean water flow in closed conduits - Velocity-area method using current-meters in full conduits and under regular flow conditions
- BS ISO 748:1997 Measurement of liquid flow in open channels. Velocity-area methods
- BS EN ISO 748:2000 Measurement of liquid flow in open channels. Velocity-area methods
- BS 3680-3A:1980 Measurement of liquid flow in open channels. Stream flow measurement-Velocity-area methods
- BS 3680-3:1964 Measurement of liquid flow in open channels. Dilution methods. Velocity area methods
- BS 1042-2.3:1984 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 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 1042-2.2:1983 Measurement of fluid flow in closed conduits. Velocity area methods. Method of measurement of velocity at one point of a conduit of circular cross section
- BS ISO 3966:2020 Measurement of fluid flow in closed conduits. Velocity area method using Pitot static tubes
Standard Association of Australia (SAA)
- AS 3778.3.2:1990 Measurement of water flow in open channels - Velocity-area methods - Measurement by moving-boat method
- AS 3778.3.3:1990 Measurement of water flow in open channels, Part 3.3: Velocity-area methods - Measurement by slope-area method
- AS 3778.3.3:2022 Measurement of water flow in open channels, Part 3.3: Velocity-area methods — Measurement by slope-area method (ISO 1070:2018, IDT)
- AS 3778.3.2:1990(R2009) Open channel flow measurement velocity-area method mobile boat method measurement
- AS 3778.3.5:1990 Measurement of water flow in open channels - Velocity-area methods - Investigation of total error
- AS 3778.3.7:2007 Measurement of water flow in open channels - Velocity-area methods - Measurement by ultrasonic (acoustic) method
- AS 3778.3.6:1990 Measurement of water flow in open channels, Part 3.6: Velocity-area methods - Measurement of flow in tidal channels
- AS 3778.3.8:2007 Measurement of water flow in open channels - Velocity-area methods - Electromagnetic method using a full-channel-width coil
- AS 3778.3.1:1990 Measurement of water flow in open channels, Part 3.1: Velocity-area methods - Measurement by current-meters and floats
Canadian General Standards Board (CGSB)
- CGSB 157.2-M91-CAN/CGSB-1991 Mesure De Debit Des Liquides Dans Les Canaux Decouverts - Methodes D'Exploration Du Champ Des Vitesses
- CAN/CGSB-157.2-M91-1991 Liquid Flow Measurement in Open Channels - Velocity-Area Methods
Association of German Mechanical Engineers
- VDI/VDE 2640 Blatt 2-1979 Netzmessungen in Stroemungsquerschnitten; Bestimmung des Wasserstromes in geschlossenen@ ganz gefuellten Leitungen mit Kreis- oder Rechteckquerschnitt
- VDI/VDE 2640 BLATT 2-1981 Network measurements in flow cross-sections; determination of water flow in closed, completely filled pipes with circular or rectangular cross-section
- VDI/VDE 2640 BLATT 3-1983 Network measurements in flow cross-sections; determination of gas flow in pipes with circular, circular ring or rectangular cross-section
Swedish Institute for Standards
- SS-EN ISO 748:2000 Measurement of liquid flow in open channels - Velocity-area methods (ISO 748:1997)
- SS-EN ISO 11073-10421:2012 Health informatics - Personal health device communication - Part 10421: Device specialization - Peak expiratory flow monitor (peak flow) (ISO 11073-10421:2012)
Spanish Association for Standardization (UNE)
- UNE-EN ISO 748:2001 Measurement of liquid flow in open channels - Velocity-area methods. (ISO 748:1997)
Military Standards (MIL-STD)
- MIL MIL-F-24259A-2019 FLUID FLOWMETER, VOLUME VELOCITY TYPE
Bureau of Indian Standards
- IS 2915-1965 Instructions for Collection of Data for the Determination fof Error in Measurement of Flow by Velocity Area Methods
Standards Norway
- NS-EN ISO 748:2000 Measurement of liquid flow in open channels — Velocity-area methods (ISO 748:1997)
- NS-EN ISO 748:2021 Hydrometry - Measurement of liquid flow in open channels - Velocity area methods using point velocity measurements (ISO 748:2021)
Association Francaise de Normalisation
- NF X10-114:1993 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.
- NF X10-112*NF ISO 3966:2021 Measurement of fluid flow in closed conduits - Velocity area method using Pitot static tubes
United States Navy
- NAVY MIL-F-24259 A-1987 FLUID FLOWMETER, VOLUME VELOCITY TYPE
ESDU - Engineering Sciences Data Unit
- TD MEMO 6511 A-1969 A method for estimating the pressure distribution between the crest and the trailing edge on the surface of an aerofoil section in a sonic stream.
GCC Standardization Organization
- GSO ISO 748:2024 Hydrometry — Measurement of liquid flow in open channels — Velocity area methods using point velocity measurements
- GSO ISO 3966:2022 Measurement of fluid flow in closed conduits — Velocity area method using 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 for Testing and Materials (ASTM)
- ASTM D3858-95(2014) Standard Test Method for Open-Channel Flow Measurement of Water by Velocity-Area Method
- ASTM D3858-95(2008) Standard Test Method for Open-Channel Flow Measurement of Water by Velocity-Area Method
- ASTM D3858-95(2003) Standard Test Method for Open-Channel Flow Measurement of Water by Velocity-Area Method
- ASTM D3858-95(1999) Standard Test Method for Open-Channel Flow Measurement of Water by Velocity-Area Method
Danish Standards Foundation
- DANSK DS/ISO 3966:2020 Measurement of fluid flow in closed conduits – Velocity area method using Pitot static tubes
- DANSK DS/ISO 748:2021 Hydrometry – Measurement of liquid flow in open channels – Velocity area methods using point velocity measurements
Kingdom of Bahrain Testing and Metrology Directorate
- BH GSO ISO 3966:2023 Measurement of fluid flow in closed conduits — Velocity area method using Pitot static tubes
- 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
CZ-CSN
- CSN ISO 1088:1994 Liquid flow measurement in open channels. Velocity-area methods. Collection and processing of data for determination of errors in measurement
Velocity peak area,Flow rate versus peak area,Flow rate + peak area,Velocity peak area,Flow rate + peak area,Flow rate and peak area