Sign In |Help & Support
ALL SECTORS
  • ALL SECTORS
  • GB(National Standard)
  • CB(Shipping)
  • CECS(Engineering Construction)
  • CJ(Urban Construction)
  • CY(News and Publication)
  • DB(Provincial Standard)
  • DL(Electricity & Power)
  • DZ(Geology & Mineralogy)
  • FZ(Spinning & Textile)
  • GA(Public Security)
  • HB(Aviation)
  • HG(Chemical Industry)
  • HJ(Environmental Protection)
  • JB(Machinery)
  • JC(Building Materials)
  • JG(Building & Construction)
  • JJ(Metering)
  • JT(Highway & Transportation)
  • LY(Forestry)
  • MT(Coal)
  • NB(Energy)
  • NY(Agriculture)
  • QB(Light Industry)
  • QC(Automobile & Vehicle)
  • QJ(Aerospace)
  • SH(Petrochemical)
  • SJ(Electronics)
  • SL(Water Resources)
  • SN(Commodity Inspection)
  • SY(Oil & Gas)
  • TB(Railway & Train)
  • YB(Ferrous Metallurgy)
  • YC(Tobacco)
  • YD(Telecommunication)
  • YY(Medical Device)
Database: 365,228(8 Aug 2026)

Flow Counting Principle

Flow Counting Principle, Total:116 items.

The international standard classification for "Flow Counting Principle" includes: Petroleum products and natural gas handling equipment , Biology. Botany. Zoology , Nuclear energy in general , Pumps , Aids for disabled or handicapped persons , Cranes , Measurement of electrical and magnetic quantities , Measurement of fluid flow .

The Chinese standard classification for "Flow Counting Principle" includes: Marking, packaging, transport and storage , Biological agent and blood products , Nuclear detector , Technical management , Extracorporeal circulation, artificial organ and prosthesis device , Hoisting machinery , Mechanics Measurement , AC/DC electrical instrument recording instrument , Flow capacity and material level instrument .


General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 9109.4-1988 Dynamic measurement of crude oil--The operating stipulations of verificating positive displacement meters by pipe prover
  • GB/T 42814-2023 Design principles for communication support board using pictorial symbols
  • GB/T 20131-2006 Calibration and usage of α/β gas proportional counters
  • GB/T 39730-2020 General requirements for cell counting—Flow cytometry
  • GB/T 11057-1989 The operational management of the centrifugal, mixed flow and axial pumps
  • GB/T 22437.2-2023 Cranes—Design Principles for loads and load combinations—Part 2:Mobile cranes
  • GB/T 9109.2-1988 Dynamic measurement of crude oil--The technical requirement of displacement meter installation
  • GB/T 22437.2-2010 Cranes—Design principles for loads and load combinations—Part 2:Mobile cranes

National Metrological Verification Regulations of the People's Republic of China

Professional Standard - Machinery

Chongqing Provincial Standard of the People's Republic of China

Group Standards of the People's Republic of China

National Metrological Technical Specifications of the People's Republic of China

  • JJF 1590-2016 Program of Pattern Evaluation of Differential Pressure Type Flowmeters
  • JJF 1510-2015 Program Pattern Evaluation of Target Flowmeter

Professional Standard - Chemical Industry

Association of German Mechanical Engineers

Standard Association of Australia (SAA)

  • AS 4250.1:1995 Liquid hydrocarbons - Dynamic measurement - Proving systems for volumetric meters - General principles
  • AS 4250.1:1995(R2016) Liquid hydrocarbons - Dynamic measurement - Proving systems for volumetric meters - General principles

Gosstandart of Russia

  • GOST 29321-1992 Overhead travelling stacker cranes. Basic for calculation
  • GOST 28710-1990 Rack stacker-cranes. Basic for calculation
  • GOST 4.158-1985 System of product-quality indices. Volumetric, velocity counters, batchmeters and flowmeters. Electromagnetic flowmeters. Vortex flowmeters, batchmeters and metering plants. Nomenclature of indices
  • GOST 28766-1990 Racks. Basic forcalculation
  • GOST R 56714.2-2015 Multi project management. Management of project, project portfolios, programmes. Part 2. Processes, process model
  • GOST 21011.0-1975 High-voltage kenotrons. Methods measurements of electric parameters. General requirements
  • GOST R 58299-2018 Product data management. Design data presentation in digital form. General requirements

Japanese Industrial Standards Committee (JISC)

  • JIS B 9934:2000 Hydraulic fluid power -- Determination of particulate contamination by automatic counting using the light extinction principle
  • JIS B 9934:2012 Hydraulic fluid power -- Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle

British Standards Institution (BSI)

  • BS ISO 11500:1997 Hydraulic fluid power. Determination of particulate contamination by automatic counting using the light extinction principle
  • BS ISO 23081-1:2017 Information and documentation. Records management processes. Metadata for records. Principles
  • BS ISO 11500:2008 Hydraulic fluid power - Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle
  • 10/30232464 DC BS EN 12480. Gas meters. Rotary displacement meters
  • BS ISO 11500:2022 Hydraulic fluid power. Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle
  • BS ISO/IEC 19944-1:2020 Cloud computing and distributed platforms. Data flow, data categories and data use - Fundamentals
  • BS EN ISO 12100-2:2003 Safety of machinery - Basic concepts, general principles for design - Technical principles

Cuban Institute of Standards and Metrology

  • NC 99-35-1985 Computing. Automized Technological Process Management Systems. General Principies
  • NC 50-10-1985 Physical and Territorial Planning. General Principies

German Institute for Standardization

  • DIN EN ISO 7278-1:1996 Liquid hydrocarbons - Dynamic measurement - Proving systems for volumetric meters - Part 1: General principles (ISO 7278-1:1987); German version EN ISO 7278-1:1995
  • DIN 15434-1:1989-01 Power transmission engineering; principles for drum- and discbrakes, calculation
  • DIN 69909-2:2013 Multi-Project Management - Management of project portfolios, programmes and projects - Part 2: Processes, process model
  • DIN 22200:1994-05 Continuous mechanical handling equipment; apron conveyors; principles for calculation
  • DIN 740-2:1986-08 Power transmission engineering; flexible shaft couplings; parameters and design principles
  • DIN 66354:2021 Kitchen equipment - Forms, planning principles
  • DIN 66354:1986 Kitchen equipment; forms, planning principles
  • DIN 4114-2:1953 Basic principles of stability calculation

Korean Agency for Technology and Standards (KATS)

  • KS M ISO 7278-1:2003 Liquid hydrocarbons - Dynamic measurement - Proving systems for volumetric meters - Part 1: General principles
  • KS B 5239-1987 Flow type air gauges
  • KS B 5239-2002(2017) Flow type air gauges
  • KS B 5239-1982 Flow type air gauges
  • KS B 50032-2020 Gas volume meters-Part 3:Rotary pistongas meters and turbine gas meters
  • KS B ISO 11500:2007 Hydraulic fluid power-Determination of particulate contamination by automatic counting using the light extinction principle
  • KS B ISO 11500:2014 Hydraulic fluid power — Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle
  • KS B ISO 11500-2019 Hydraulic fluid power — Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle
  • KS B 5239-2002 Flow type air gauges
  • KS B ISO 2537:2014 Liquid flow measurement in open channels-Rotating element current-meters
  • KS B ISO 11031-2017 Cranes — Principles for seismically resistant design

US Federal Contractor Registration (USFCR)

Association Francaise de Normalisation

  • NF E48-658:1990 Hydraulic fluid power. Fluids. Determination of particulate contamination by automatic counting using the light interruption principle.
  • NF E48-658*NF ISO 11500:2023 Hydraulic fluid power - Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle
  • NF E60-150:1965 Machine tools. Principles of workshop metrology.
  • NF ISO 23592:2021 Service Excellence – Principles and Model

American Society of Mechanical Engineers (ASME)

Ente Nazionale Italiano di Unificazione

  • UNI EN 1359:2001 Gas meters - Diaphragm gas meters
  • UNI SPERIMENTALE 8862-1:1987 Calculation of load capacity of spur and helical gears. Principles, symbols, fundamental formulaes and limit parameters.
  • UNI EN ISO 10075-2:2002 Ergonomic principles related to mental workload - Design principles
  • UNI ISO 11500:2023 Hydraulic fluid power - Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle
  • UNI ISO 11500:2017 Hydraulic fluid power -- Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle

The Directorate General of Specifications and Metrology (DGSM)

  • OS GSO OIML D9:2012 Principles of Metrological Supervision
  • OS GSO ISO 11500:2015 Hydraulic fluid power -- Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle

Kingdom of Bahrain Testing and Metrology Directorate

  • BH GSO OIML D9:2013 Principles of Metrological Supervision
  • BH GSO ISO 11500:2016 Hydraulic fluid power -- Determination of the particulate contamination level of a liquid sample by automatic particle counting using the light-extinction principle

GCC Standardization Organization

  • GSO OIML D9:2012 Principles of Metrological Supervision
  • GSO ISO 14617-10:2015 Graphical symbols for diagrams -- Part 10: Fluid power converters
  • GSO IEC 81714-2:2015 Design of graphical symbols for use in the technical documentation of products - Part 2: Specification for graphical symbols in a computer sensible form, including graphical symbols for a reference library, and requirements for their interchange

American Industrial Hygiene Association (AIHA)

  • ASSE 1013-2011 Performance Requirements for Reduced Pressure Principle Backflow Preventers and Reduced Pressure Principle Fire Protection Backflow Preventers
  • ASSE 1013-2021 Performance Requirements for Reduced Pressure Principle Backflow Preventers and Reduced Pressure Principle Fire Protection Backflow Preventers

Bureau of Indian Standards

Clinical and Laboratory Standards Institute

  • CLSI H42-A2-2007 Flow cytometric enumeration of immune-defined cell populations

American National Standards Institute (ANSI)

  • ANSI/AWWA C511-2017 Reduced-Pressure Principle Backflow Prevention Assembly
  • ANSI/ASSE 1013-2011 Performance Requirements for Reduced Pressure Principle Backflow Preventers and Reduced Pressure Principle Fire Protection Backflow Preventers
  • ANSI B109.3-2000 Rotary-Type Gas Displacement Meters

American Water Works Association (AWWA)

International Telecommunication Union (ITU)

  • ITU-T K.11-2009 Principles of protection against overvoltages and overcurrents
  • ITU-T K.11-1988 Principles of protection against overvoltages and overcurrents
  • ITU-T K.11-1984 Principles of protection against overvoltages and overcurrents

Austrian Standards

National Standardisation Body (ASRO)

Polski Komitet Normalizacyjny (PKN)

Swedish Institute for Standards

  • SIS SS IEC 485:1981 Electronic measuring equipment — Digital electronic d.c. voltmeters and d.c. electronic analogue-to-digital converters

International Organization for Standardization (ISO)

  • ISO 8000-61:2016 Data quality - Part 61: Data quality management: Process reference model
  • ISO 2537:1985 Liquid flow measurement in open channels — Cup-type and propeller-type current-meters
  • ISO 2537:1988 Liquid flow measurement in open channels; rotating element current-meters
  • ISO 2537:1974 Title missing - Legacy paper document

American Gas Association

GB-REG

  • REG NASA-LLIS-1341-2003 Lessons Learned — Risk Management: Lack of a Formal Risk Management Plan (RMP) and Process

The Institution of Engineering and Technology (IET)

Standards New Zealand

Military Standards (MIL-STD)

American Concrete Institute

Czech Standards Institute (UNMZ)