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Classification of wind tunnels

Classification of wind tunnels, Total:216 items.

In the international standard classification, Classification of wind tunnels involves: Structure and structure elements, Information technology (IT) in general, Geology. Meteorology. Hydrology, Wind turbine systems and other alternative sources of energy, Telecommunication systems, Commercial vehicles, Diagnostic, maintenance and test equipment, Measurement of time, velocity, acceleration, angular velocity, Road vehicle systems, Ventilators. Fans. Air-conditioners, Applications of information technology, Elements of buildings, Construction materials, Transport, Agricultural machines, implements and equipment, Road vehicles in general, Construction of railways, Character sets and information coding, Vocabularies, Protective equipment, Air quality, Physical planning. Town planning, Electrical accessories, Services, Languages used in information technology, Installations in buildings.


Professional Standard - Aerospace, Classification of wind tunnels

  • QJ 2343-1992 Classification and codes of wind tunnel test objects
  • QJ 1916.7-1990 Aerodynamic database data element domestic wind tunnel model test type code
  • QJ 2119-1991 Application and Analysis of Transponder and Supersonic Wind Tunnel Missile Force Test Results
  • QJ 1964-1990 Evaluation Method of Precision and Accuracy of Wind Tunnel Dynamometer Test

Professional Standard - Aviation, Classification of wind tunnels

  • HB 7606-1998 Wind Tunnel Energy Saving Monitoring
  • HB 6758-1993 General requirements for low-velocity wind tunnel launch test of suspended objects

National Aeronautics and Space Administration (NASA), Classification of wind tunnels

  • NASA NACA-TM-1122-1947 Systematic Wind-Tunnel Measurements on Missiles
  • NASA NACA-TN-775-1940 Analysis of wind-tunnel data on directional stability and control
  • NASA NACA-TN-419-1932 Wind-tunnel tests of the Fowler variable-area wing
  • NASA NACA-ARR-3E25-1943 Full-scale tunnel investigation of the pressure distribution over the tail of the P-47B airplane
  • NASA NACA-TM-1095-1946 Wind-Tunnel Investigation of the Horizontal Motion of a Wing Near the Ground
  • NASA NACA-TN-705-1939 Wind-tunnel investigation of ground effect on wings with flaps
  • NASA NACA-TN-1277-1947 Two-dimensional wind-tunnel investigation of the NACA 64(sub 1)-012 airfoil equipped with two types of leading-edge flap
  • NASA-TM-78650-1978 Wind-tunnel results for an improved 21-percent-thick low-speed airfoil section
  • NASA-TP-1919-1981 Wind-tunnel results for a modified 17-percent-thick low-speed airfoil section
  • NASA NACA-TR-668-1939 Wind-tunnel investigation of N.A.C.A. 23012, 23021, and 23030 airfoils with various sizes of split flap
  • NASA NACA-ACR-L5H08-1945 Supersonic-tunnel tests of projectiles in Germany and Italy
  • NASA NACA-TN-3497-1955 Summary of results of a wind-tunnel investigation of nine related horizontal tails
  • NASA-NGR-17-002-043-1968 Wind tunnel investigations of vortex breakdown on slender sharp edged wings
  • NASA NACA-WR-L-489-1940 Drag analysis of single-engine military airplanes tested in the NACA full-scale wind tunnel
  • NASA NACA-TR-661-1939 Tests in the variable-density wind tunnel of the N.A.C.A. 23012 airfoil with plain and split flaps
  • NASA NACA-ACR-3I20-1943 Wind-Tunnel Investigation of a Low-Drag Airfoil Section with a Double Slotted Flap
  • NASA NACA-ACR-3L08-1943 Wind-tunnel data on the aerodynamic characteristics of airplane control surfaces
  • NASA NACA-RM-L57H13-1957 BUFFET TESTS OF AN ATTACK-AIRPLANE MODEL WITH EMPHASIS ON ANALYSIS OF DATA FROM WIND-TUNNEL TESTS
  • NASA NACA-TN-755-1940 Wind-tunnel investigation of an N.A.C.A. 23030 airfoil with various arrangements of slotted flaps
  • NASA NACA-TN-763-1940 Wind-tunnel investigation of two airfoils with 25-percent-chord Gwinn and plain flaps
  • NASA NACA-TR-664-1939 Wind-Tunnel Investigation of an N.A.C.A. 23012 Airfoil with Various Arrangements of Slotted Flaps
  • NASA NACA-RM-A7L16-1948 A WIND-TUNNEL INVESTIGATION AT LOW SPEED OF VARIOUS LATERAL CONTROLS ON A 45° SWEPT-BACK WING
  • NASA NACA-WR-L-628-1944 Tests of the Northrop MX-334 glider airplane in the NACA full-scale tunnel
  • NASA NACA-TR-781-1944 Wind-tunnel procedure for determination of critical stability and control characteristics of airplanes
  • NASA NACA-RM-L8K22-1949 Two-dimensional wind-tunnel investigation of two NACA 6-series airfoils with leading-edge slats
  • NASA NPR 8705.4-2004 Risk Classification for NASA Payloads
  • NASA NACA-ARR-3L10-1943 Wind-tunnel investigation of an NACA 23012 airfoil with a 0.30-airfoil-chord double slotted flap
  • NASA NACA-ARR-L4J05-1944 Wind-tunnel investigation of an NACA 23021 airfoil with a 0.32-airfoil-chord double slotted flap
  • NASA NACA-WR-L-447-1943 Wind-tunnel investigation of control-surface characteristics XI - various large overhang and internal-type aerodynamic balances for a straight-contour flap on the NACA 0015 airfoil
  • NASA NACA-TN-715-1939 Wind-tunnel investigation of an N.A.C.A. 23012 airfoil with two arrangements of a wide-chord slotted flap
  • NASA NACA-TR-723-1941 Wind-tunnel investigation of NACA 23012, 23021, and 23030 airfoils equipped with 40-percent-chord double slotted flaps
  • NASA NACA-TR-825-1945 Analysis of wind-tunnel stability and control tests in terms of flying qualities of full-scale airplanes
  • NASA NACA-TN-1417-1947 High-speed wind-tunnel tests of an NACA 0009-64 airfoil having a 33.4-percent-chord flap with an overhang 20.1 percent of the flap chord
  • NASA-TM-4061-1988 Wind tunnel wall interference (January 1980-May 1988): A selected, annotated bibliography
  • NASA NACA-WR-L-454-1942 Wind-tunnel investigation of control-surface characteristics VI - a 30-percent-chord plain flap on the NACA 0015 airfoil
  • NASA NACA-RM-L7D11-1947 Wind-tunnel investigation of bomb-bay configurations intended to minimize the tumbling of light-weight bombs
  • NASA NACA-ACR-4B28-1944 Wind-tunnel investigation of control-surface characteristics XVIII - a linked overhang aerodynamic balance
  • NASA NACA-TN-3176-1954 Wall interference in wind tunnels with slotted and porous boundaries at subsonic speeds
  • NASA NACA-TN-808-1941 Wind-tunnel investigation of an NACA 23012 airfoil with several arrangements of slotted flaps with extended lips
  • NASA NACA-TN-1545-1948 Wind-tunnel investigation of seven thin NACA airfoil sections to determine optimum double-slotted-flap configurations
  • NASA-TN-D-5364-1969 Wind-tunnel investigation of an STOL aircraft configuration equipped with an external-flow jet flap
  • NASA NACA-RM-A7L02-1948 A summary and analysis of wind-tunnel data on the lift and hinge-moment characteristics of control surfaces up to a Mach number of 0.90
  • NASA-TR-D-747-1942 Wind-tunnel tests of four - and six-blade single - and dual-rotating tractor propellers
  • NASA NACA-RM-L7K06-1948 Two-dimensional wind-tunnel investigation at high Reynolds numbers of an NACA 65A006 airfoil with high-lift devices
  • NASA-TN-D-8260-1976 A design approach and selected wind tunnel results at high subsonic speeds for wing-tip mounted winglets
  • NASA NACA-CB-L4G10-1944 Wind tunnel investigation of NACA 66(215)-216, 66,1-212, and 65(sub 1)-212 airfoils with 0.20-airfoil-chord split flaps
  • NASA NACA-RM-L7A30-1947 Wind-tunnel investigation of air loads over a double slotted flap on the NACA 65(216)-215, a = 0.8 airfoil section
  • NASA-TP-2772-1987 Wind-tunnel investigation of a full-scale general aviation airplane equipped with an advanced natural laminar flow wing
  • NASA NACA-RM-L8D29-1948 Wind-tunnel investigation of high-lift and stall-control devices on a 37 degrees sweptback wing of aspect ratio 6 at high Reynolds numbers
  • NASA NACA-TN-702-1936 Wind-tunnel tests of several forms of fixed wing slot in combination with a slotted flap on an N.A.C.A. 23012 airfoil
  • NASA NACA-TN-1473-1947 High-speed wind-tunnel investigation of high lift and aileron-control characteristics of an NACA 65-210 semi-span wing
  • NASA-TN-D-4664-1968 Wind-tunnel study to explore the use of slot spoilers to modulate the flap-induced lift of a wing
  • NASA-TN-D-4983-1969 Full-scale wind-tunnel investigation of static longtudinal and lateral characteristics of a light twin-engine airplane
  • NASA NACA-RM-L55F21-1955 Wind-tunnel investigation at low speed of sideslipping, rolling, yawing, and pitching characteristics for a model of a 45 degrees swept-wing fighter-type airplane
  • NASA-TN-D-3797-1967 Large-scale wind tunnel tests of a subsonic transport with AFT engine nacelles and high tail
  • NASA NACA-ARR-L4D03-1944 Wind-tunnel investigation of control-surface characteristics XVI - pressure distribution over an NACA 0009 airfoil with 0.30-airfoil-chord beveled-trailing-edge flaps
  • NASA NACA-ACR-4C11-1944 Wind-Tunnel Investigation of Shielded Horn Balances and Tabs on a 0.7-Scale Model of XF6F Vertical Tail Surface
  • NASA NACA-RM-L53J21-1953 Wind-tunnel investigation at transonic speeds of a spoiler-slot-deflector combination on an unswept NACA 65A006 wing
  • NASA-TM-81745-1981 Low and high speed propellers for general aviation - Performance potential and recent wind tunnel test results
  • NASA NACA-ARR-3F29-1943 Wind-tunnel investigation of control-surface characteristics XIV - NACA 0009 airfoil with a 20-percent-chord double plain flap
  • NASA-TN-D-6058-1970 Wind-tunnel investigation of a jet transport airplane configuration with high thrust-weight ratio and an external-flow jet flap
  • NASA NACA-RM-A8B11-1948 Wind-tunnel investigation of horizontal tails. II - unswept and 35 degrees swept-back plan forms of aspect ratio 4.5
  • NASA NACA-RM-A7K24-1948 Wind-tunnel investigation of horizontal tails. I - unswept and 35 degrees swept-back plan forms of aspect ratio 3
  • NASA NACA-RM-A8H30-1948 Wind-tunnel investigation of horizontal tails. III - unswept and 35 degrees swept-back plan forms of aspect ratio 6
  • NASA NACA-RM-A8J21-1948 Wind-tunnel investigation of horizontal tails IV : unswept plan form of aspect ratio 2 and a two-dimensional model
  • NASA-TM-X-2313-1971 Large-scale wind-tunnel tests of a propeller-driven deflected slipstream STOL model in ground effect
  • NASA NACA-TN-1766-1948 Wind-tunnel investigation of effects of tail length on the longitudinal and lateral stability characteristics of a single-propeller airplane model
  • NASA NACA-ACR-L5F27-1945 Two-dimensional wind-tunnel investigation of 0.20-airfoil-chord plain ailerons of different contour on an NACA 65(sub 1)-210 airfoil section

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., Classification of wind tunnels

  • ASHRAE 3803-1994 Cross-Ventilation and Room Partitions: Wind Tunnel Experiments on Indoor Airflow Distribution
  • ASHRAE DA-00-14-2-2000 Investigation of Static Microisolators in Wind Tunnel Tests and Validation of CFD Cage Model

American Institute of Aeronautics and Astronautics (AIAA), Classification of wind tunnels

AIAA - American Institute of Aeronautics and Astronautics, Classification of wind tunnels

  • R-092-1-2003 Wind Tunnel Testing Part 1: Management Volume
  • R-092-2-2003 Wind Tunnel Testing Part 2: Practitioners Volume
  • R-093-2003 Calibration of Subsonic and Transonic Wind Tunnels
  • G-129-2012 Nomenclature and Axis Systems for Aerodynamic Wind Tunnel Testing
  • S-071A-1999 Assessment of Experimental Uncertainty with Application to Wind Tunnel Testing
  • R-091-2003 Calibration and Use of Internal Strain- Gage Balances with Application to Wind Tunnel Testing

Society of Automotive Engineers (SAE), Classification of wind tunnels

  • SAE ARP5905-2003 Calibration and Acceptance of Icing Wind Tunnels
  • SAE J1252-1981 SAE Wind Tunnel Test Procedure for Trucks and Buses
  • SAE J1252-2012 SAE Wind Tunnel Test Procedure for Trucks and Buses
  • SAE J2777-2016 Recommended Best Practice for Climatic Wind Tunnel Correlation
  • SAE J2777-2022 Recommended Best Practice for Climatic Wind Tunnel Correlation
  • SAE J2071-1994 Aerodynamic Testing of Road Vehicles - Open Throat Wind Tunnel Adjustment

GB-REG, Classification of wind tunnels

  • REG NASA-LLIS-0204-1993 Lessons Learned - Wind Tunnel Model - Analysis Failure
  • REG NACA-TR-554-1937 Wind-tunnel investigation of ordinary and split flaps on airfoils of different profile
  • REG NASA-N69-14762-1968 Wind tunnel investigations of vortex breakdown on slender sharp-edged wings
  • REG NASA-LLIS-0869-2000 Lessons Learned ?Prop-Rotor Mishap in 40'x80' Wind Tunnel
  • REG NACA-TR-679-1939 Wind-Tunnel Investigation of an N.A.C.A. 23012 Airfoil with a Slotted Flap and Three Types of Auxiliary Flap
  • REG NACA-RM-A9D05-1949 Wind-tunnel investigation of horizontal tails V : 45 degree swept-back plan form of aspect ratio 2
  • REG NASA-TM-X-62197-1973 Wind-tunnel investigation of a large-scale 25 degrees swept-wing jet transport model with an external blowing triple-slotted flap
  • REG NACA-TN-659-1938 Wind-tunnel of three lateral-control devices in combination with a full-span slotted flap on an N.A.C.A. 23012 airfoil
  • REG NACA-ACR-L4F23-1944 Wind-tunnel investigation of control-surface characteristics XIX - a double flap with an overhang and an internal aerodynamic balance

American Society of Civil Engineers (ASCE), Classification of wind tunnels

RU-GOST R, Classification of wind tunnels

  • GOST R 56546-2015 Information protection. Vulnerabilities in information systems. The classification of vulnerabilities in information systems
  • GOST 33660-2015 Fans. Efficiency classification
  • GOST R 53310-2009 Through penetration for cables, hermetic inputs and through penetration of electric current types. Requirements of fire safety. Fire resistance test methods
  • GOST R 55980-2014 Risk management on railway transport. Hazardous events classification

German Institute for Standardization, Classification of wind tunnels

  • DIN ISO 17713-1:2007 Meteorology - Wind measurements - Part 1: Wind tunnel test methods for rotating anemometer performance (ISO 17713-1:2007) English version of DIN ISO 17713-1:2007-10
  • DIN ISO 17713-1:2007-10 Meteorology - Wind measurements - Part 1: Wind tunnel test methods for rotating anemometer performance (ISO 17713-1:2007)
  • DIN 81208-22:2010 Manoeuvring of ships - Part 22: Wind tunnel test; Text in German and English
  • DIN V VDE V 0831-100:2009 Electric signalling systems for railways - Part 100: Risk based assessment of potential safety flaws and risk mitigating measures
  • DIN EN ISO 12759-4:2020-05 Fans - Efficiency classification for fans - Part 4: Driven fans at maximum operating speed (ISO 12759-4:2019); German version EN ISO 12759-4:2019
  • DIN EN ISO 12759-5:2022-04 Fans - Efficiency classification for fans - Part 5: Jet fans (ISO 12759-5:2021); German version EN ISO 12759-5:2021
  • DIN EN ISO 12759-2:2017-08 Fans - Efficiency classification for fans - Part 2: Standard losses for drive components (ISO/DIS 12759-2:2017); German and English version prEN ISO 12759-2:2017 / Note: Date of issue 2017-07-14*Intended as replacement for DIN EN ISO 12759 (2015-12).
  • DIN EN 12210:2016-09 Windows and doors - Resistance to wind load - Classification; German version EN 12210:2016
  • DIN EN ISO 12759-5:2019 Fans - Efficiency classification for fans - Part 5: Jet fans (ISO/DIS 12759-5:2019); German and English version prEN ISO 12759-5:2019
  • DIN EN ISO 12759-3:2017-02 Fans - Efficiency classification for fans - Part 3: Fans without drives at maximum operating speed (ISO/DIS 12759-3:2016); German and English version prEN ISO 12759-3:2016 / Note: Date of issue 2017-01-13*Intended as replacement for DIN EN ISO 12759 (2...
  • DIN EN ISO 12759-4:2020 Fans - Efficiency classification for fans - Part 4: Driven fans at maximum operating speed (ISO 12759-4:2019)
  • DIN EN ISO 12759-3:2017 Fans - Efficiency classification for fans - Part 3: Fans without drives at maximum operating speed (ISO/DIS 12759-3:2016); German and English version prEN ISO 12759-3:2016
  • DIN EN ISO 12759-2:2017 Fans - Efficiency classification for fans - Part 2: Standard losses for drive components (ISO/DIS 12759-2:2017); German and English version prEN ISO 12759-2:2017

国家市场监督管理总局、中国国家标准化管理委员会, Classification of wind tunnels

  • GB/T 19068.3-2019 Small wind turbines—Part 3: Wind tunnel test methods
  • GB/T 30279-2020 Information security technology—Guidelines for categorization and classification of cybersecurity vulnerability
  • GB/T 37192-2018 Classification and symbol for outdoor air conditioning equipment

ESDU - Engineering Sciences Data Unit, Classification of wind tunnels

  • ESDU 90005 B-1991 Frequencies of resonance in wind tunnels with ventilated walls and plenum chamber.
  • ESDU 76028 A-1995 Lift-interference and blockage corrections for two-dimensional subsonic flow in ventilated and closed wind-tunnels.
  • ESDU 05022-2006 Extrapolating wind-tunnel data to full-scale Reynolds number. Part 1: Principles
  • ESDU 07010-2007 Extrapolating wind-tunnel data to full-scale Reynolds number Part 2: Procedures
  • ESDU 95014-1995 Upwash interference for wings in solid-liner wind tunnels using subsonic linearised-theory.

Korean Agency for Technology and Standards (KATS), Classification of wind tunnels

  • KS I ISO 17713-1:2020 Meteorology — Wind measurements — Part 1: Wind tunnel test methods for rotating anemometer performance
  • KS I ISO 17713-1:2009 Meteorology-Wind measurements-Part 1:Wind tunnel test methods for rotating anemometer performance

KR-KS, Classification of wind tunnels

  • KS I ISO 17713-1-2020 Meteorology — Wind measurements — Part 1: Wind tunnel test methods for rotating anemometer performance

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Classification of wind tunnels

  • GB/T 19068.3-2003 Off-grid wind turbine generator system Part 3: Wind tunnel test methods
  • GB/T 16758-1997 The classification and technical specification of exhaust hood
  • GB/T 16758-2008 The classification and technical specification of exhaust hood
  • GB/T 32241-2015 Laboratory method for measuring spray drift of plant protection machinery wind tunnel test

工业和信息化部, Classification of wind tunnels

  • YD/T 3955-2021 Guide to Classification and Definition of WEB Vulnerabilities
  • YD/T 3448-2019 Standards for classification and grading of networked software source code vulnerabilities

SAE - SAE International, Classification of wind tunnels

British Standards Institution (BSI), Classification of wind tunnels

  • BS ISO 12759:2010+A1:2013 Fans. Efficiency classification for fans
  • BS ISO 17713-1:2007 Meteorology. Wind measurements. Wind tunnel test methods for rotating anemometer performance
  • BS EN ISO 12759-5:2021 Fans. Efficiency classification for fans. Jet fans
  • BS ISO 22856:2009 Equipment for crop protection. Methods for the laboratory measurement of spray drift. Wind tunnels
  • BS ISO 22856:2008 Equipment for crop protection - Methods for the laboratory measurement of spray drift - Wind tunnels
  • BS EN 12210:2000 Windows and doors - Resistance to wind load - Classification
  • 23/30442856 DC Draft BS ISO 12759-6. Fans — Efficiency classification for fans - Part 6: Calculation of the fan energy index

International Organization for Standardization (ISO), Classification of wind tunnels

  • ISO 17713-1:2007 Meteorology - Wind measurements - Part 1: Wind tunnel test methods for rotating anemometer performance
  • ISO 12759-5:2021 Fans - Efficiency classification for fans - Part 5: Jet fans
  • ISO 12759:2010 Fans - Efficiency classification for fans
  • ISO 22856:2008 Equipment for crop protection - Methods for the laboratory measurement of spray drift - Wind tunnels
  • ISO 12759-3:2019 Fans — Efficiency classification for fans — Part 3: Fans without drives at maximum operating speed
  • ISO/DIS 12759-6 Fans — Efficiency classification for fans — Part 6: Calculation of the fan energy index
  • ISO 12759-2:2019 Fans — Efficiency classification for fans — Part 2: Standard losses for drive components
  • ISO 12759-4:2019 Fans — Efficiency classification for fans — Part 4: Driven fans at maximum operating speed
  • ISO 12759:2010/Amd 1:2013 Fans - Efficiency classification for fans; Amendment 1
  • ISO/FDIS 12759-1 Fans — Efficiency classification for fans — Part 1: General requirements
  • ISO 13349-2:2022 Fans — Vocabulary and definitions of categories — Part 2: Categories
  • ISO/IEC AWI TR 24772-8.2 Programming languages — Avoiding vulnerabilities in programming languages — Part 8: Vulnerability descriptions for programming language Fortran
  • ISO/IEC DIS 24772-1 Programming languages — Avoiding vulnerabilities in programming languages — Part 1: Language independent catalogue of vulnerabilities
  • ISO/IEC WD TR 24772-6 Programming languages — Avoiding vulnerabilities in programming languages — Part 6: Vulnerability descriptions for programming language SPARK
  • ISO/IEC WD TR 24772-4 Programming languages — Avoiding vulnerabilities in programming languages — Part 4: Vulnerability descriptions for the programming language Python

Professional Standard - Civil Aviation, Classification of wind tunnels

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, Classification of wind tunnels

  • GB/T 33561-2017 Information security technology—Vulnerability classification

Group Standards of the People's Republic of China, Classification of wind tunnels

  • T/CPUMT 008-2022 Guidelines for categorization and classification of industrial information security vulnerability

American Society for Testing and Materials (ASTM), Classification of wind tunnels

  • ASTM C1569-03 Standard Test Method for Wind Resistance of Concrete and Clay Roof Tiles (Wind Tunnel Method)
  • ASTM C156-02b Standard Test Method for Water Retention by Concrete Curing Materials
  • ASTM C156-02a Standard Test Method for Water Retention by Concrete Curing Materials
  • ASTM C1569-03(2009) Standard Test Method for Wind Resistance of Concrete and Clay Roof Tiles (Wind Tunnel Method)
  • ASTM C1569-22 Standard Test Method for Wind Resistance of Concrete and Clay Roof Tiles (Wind Tunnel Method)

YU-JUS, Classification of wind tunnels

  • JUS H.D8.116-1987 Electric detonators. Methods of testing permitted detonators in testing tunnel

European Committee for Standardization (CEN), Classification of wind tunnels

  • EN ISO 12759-5:2021 Fans - Efficiency classification for fans - Part 5: Jet fans (ISO 12759-5:2021)
  • EN ISO 12759-4:2019 Fans - Efficiency classification for fans - Part 4: Driven fans at maximum operating speed (ISO 12759-4:2019)
  • EN ISO 12759:2015 Fans - Efficiency classification for fans
  • EN 12210:2016 Windows and doors - Resistance to wind load - Classification
  • EN ISO 13349-2:2022 Fans - Vocabulary and definitions of categories - Part 2: Categories (ISO 13349-2:2022)

ES-UNE, Classification of wind tunnels

  • UNE-EN ISO 12759:2016 Fans - Efficiency classification for fans (ISO 12759:2010, including Amd 1:2013)
  • UNE-EN ISO 12759-5:2022 Fans - Efficiency classification for fans - Part 5: Jet fans (ISO 12759-5:2021)
  • UNE-EN ISO 12759-4:2021 Fans - Efficiency classification for fans - Part 4: Driven fans at maximum operating speed (ISO 12759-4:2019)

Standard Association of Australia (SAA), Classification of wind tunnels

ETSI - European Telecommunications Standards Institute, Classification of wind tunnels

  • TR 102 893-2010 Intelligent Transport Systems (ITS); Security; Threat@ Vulnerability and Risk Analysis (TVRA) (V1.1.1)
  • TR 102 893-2017 Intelligent Transport Systems (ITS); Security; Threat@ Vulnerability and Risk Analysis (TVRA) (V1.2.1)

Association Francaise de Normalisation, Classification of wind tunnels

Danish Standards Foundation, Classification of wind tunnels

  • DS/ISO 12759-5:2021 Fans – Efficiency classification for fans – Part 5: Jet fans
  • DS/ISO 22856:2009 Equipment for crop protection - Methods for the laboratory measurement of spray drift - Wind tunnels
  • DS/EN ISO 12759-5:2021 Fans – Efficiency classification for fans – Part 5: Jet fans (ISO 12759-5:2021)
  • DS/EN 12210/AC:2002 Windows and doors - Resistance to wind load - Classification
  • DS/EN 12210:2001 Windows and doors - Resistance to wind load - Classification

American National Standards Institute (ANSI), Classification of wind tunnels

未注明发布机构, Classification of wind tunnels

ES-AENOR, Classification of wind tunnels

API - American Petroleum Institute, Classification of wind tunnels

  • API PUBL 4402-1984 Dispersion of Emissions from Offshore Oil Platforms: A Wind-Tunnel Modeling Evaluation (Withdrawn)

Military Standard of the People's Republic of China-General Armament Department, Classification of wind tunnels

  • GJB 8084-2013 Stage separation test method of missile/launch vehicle model in hypersonic wind tunnel

PL-PKN, Classification of wind tunnels

Lithuanian Standards Office , Classification of wind tunnels

CEN - European Committee for Standardization, Classification of wind tunnels

  • EN 12210:1999 Windows and Doors - Resistance to Wind Load - Classification

Professional Standard - Urban Construction, Classification of wind tunnels

AENOR, Classification of wind tunnels

BE-NBN, Classification of wind tunnels

  • NBN X 44-004-1984 Klassifizierung der in der allgemeinen Luftung angewandten Luftfilter Classification of the air filters used for generai ventilation
  • NBN X 44-004-1979 Classification of the air filters used for generai ventilation

TIA - Telecommunications Industry Association, Classification of wind tunnels

Professional Standard - Agriculture, Classification of wind tunnels

RO-ASRO, Classification of wind tunnels

Association of German Mechanical Engineers, Classification of wind tunnels

  • VDI 3783 Blatt 12-2000 Environmental meteorology - Physical modelling of flow and dispersion processes in the atmospheric boundary layer - Application of wind tunnels

Guangdong Provincial Standard of the People's Republic of China, Classification of wind tunnels

  • DB4403/T 231-2022 Standards for the Classification and Grading of Enterprise Credit Risks




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