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thermal criticality index

thermal criticality index, Total:162 items.

In the international standard classification, thermal criticality index involves: Power stations in general, Nuclear energy engineering, Valves, Conducting materials, Medical sciences and health care facilities in general, Thermodynamics and temperature measurements, Gas and steam turbines. Steam engines, Analytical chemistry, Laboratory medicine, Vocabularies, CHEMICAL TECHNOLOGY, Products of the chemical industry, Products of the textile industry, Iron and steel products, Aids for disabled or handicapped persons, Medical equipment, Applications of information technology, Pharmaceutics, Non-textile floor coverings, Protection of and in buildings, Protection against fire, Semiconductor devices, Quality, Metrology and measurement in general, Storing. Warehousing, Burners. Boilers, Pipeline components and pipelines, Radiation protection.


General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, thermal criticality index

  • GB/T 28558-2012 Supercritical and ultra-supercritical generating set parameter series
  • GB/T 11785-1989 Floor coverings--Determination of critical radiant flux using a radiant heat energy source
  • GB/T 33260.3-2018 Capability of detection.Part 3:Methodology for determination of the critical value for the response variable when no calibration data are used

Korean Agency for Technology and Standards (KATS), thermal criticality index

  • KS A ISO 16117:2017 Nuclear criticality safety — Estimation of the number of fissions of a postulated criticality accident
  • KS A ISO 16117-2017(2022) Nuclear criticality safety — Estimation of the number of fissions of a postulated criticality accident
  • KS P ISO TR 16840-9:2017 Wheelchair seating ─ Part 9: Clinical interface pressure mapping guidelines for seating
  • KS Q ISO 11843-3-2009(2019) Capability of detection-Part 3:Methodology for determination of the critical value for the response variable when no calibration data are used

British Standards Institution (BSI), thermal criticality index

  • BS ISO 16117:2013 Nuclear criticality safety. Estimation of the number of fissions of a postulated criticality accident
  • PD ISO/TR 16840-9:2015 Wheelchair seating. Clinical interface pressure mapping guidelines for seating
  • BS ISO 18417:2017 Iodine charcoal sorbents for nuclear facilities. Method for defining sorption capacity index

Professional Standard - Machinery, thermal criticality index

  • JB/T 12001-2014 Valves for the supercritical and ultra-supercritical steam power plants.General requirements
  • JB/T 9475-1999 Critical temperature resistors
  • JB/T 12000-2014 Specification of the forged steel parts for the pressure valves in supercritical and ultra-supercritical steam power plants

Instrument Society of America (ISA), thermal criticality index

German Institute for Standardization, thermal criticality index

  • DIN EN 61788-2:2007 Superconductivity - Part 2: Critical current measurement - DC critical current of Nb<(Index)3>Sn composite superconductors (IEC 61788-2:2006); German version EN 61788-2:2007
  • DIN 25403-7:1996 Criticality safety in processing and handling fissile materials - Part 7: Criticality data for low enriched uranium dioxide lattices in water
  • DIN 25403-3:2000 Criticality safety in processing and handling fissile materials - Part 3: Criticality data for plutonium 239 metal light-water-mixtures
  • DIN 25403-5:2000 Criticality safety in processing and handling fissile materials - Part 5: Criticality data for plutonium 239 dioxide light-water-mixtures
  • DIN 25403-6:2000 Criticality safety in processing and handling fissile materials - Part 6: Criticality data for plutonium 239 nitrate light-water-mixtures
  • DIN 25403-8:1995 Criticality safety in processing and handling of fissile materials - Part 8: Criticality data of uranyl nitrate (100% uranium 235) light-water mixture

GOSTR, thermal criticality index

  • GOST R 8.980-2019 State system for ensuring the uniformity of measurements. Standard reference data. The critical temperatures and critical pressures of thermo unstable substances
  • GOST R 8.944-2018 State system for ensuring the uniformity of measurements. Standard reference data. Aluminium, Mercury. Reflectivity and emittance in near and supercritical region
  • GOST R 58509-2019 Wheelchair seating. Part 9. Clinical interface pressure mapping guidelines for seating

Group Standards of the People's Republic of China, thermal criticality index

  • T/CACM 1419-2022 TCM diagnosis and treatment guidelines for borderline hypertension
  • T/STIC 110010-2021 1000MW grade ultra-supercritical double reheat steam turbine
  • T/CAAM 0009-2022 Data management specification for real-world acupuncture and moxibustion clinical research
  • T/CAAM 0006-2022 Data quality assessment specification for real-world acupuncture and moxibustion clinical research
  • T/MSITISA 02-011-2022 Guide for Defining Responsibilities-Authorities and Rights of Scientific Data
  • T/CACM 1263-2019 Clinical guidelines for diagnosis and treatment of internal diseases in TCM Dengue Fever
  • T/CACM 1310-2019 Clinical guidelines for diagnosis and treatment of internal diseases in TCM fever due to internal injury
  • T/CACM 1152-2019 Guidelines for clinical diagnosis and treatment of internal medicine in Chinese medicine—Heat in lung due to ‘wind-warm’
  • T/CAAM 0010-2020 Specifications for recording data of equipment used in real-world acupuncture and moxibustion clinical research
  • T/IQA 20-2023 User experience evaluation guide for financial product interface with Elite Score
  • T/CIATCM 076-2020 Guidelines on construction of clinical data retrieval system in Traditional Chinese Medicine Hospital
  • T/CSEE 0292-2022 Guidelines for the selection of materials and specifications for main steam, reheat steam and water supply pipelines of super (super) critical units in thermal power plants

American Society for Testing and Materials (ASTM), thermal criticality index

  • ASTM E637-05 Standard Test Method for Calculation of Stagnation Enthalpy from Heat Transfer Theory and Experimental Measurements of Stagnation-Point Heat Transfer and Pressure
  • ASTM E637-05(2011) Standard Test Method for Calculation of Stagnation Enthalpy from Heat Transfer Theory and Experimental Measurements of Stagnation-Point Heat Transfer and Pressure
  • ASTM E1449-92(2011) Standard Guide for Supercritical Fluid Chromatography Terms and Relationships
  • ASTM F2721-09(2014) Standard Guide for Pre-clinical in vivo Evaluation in Critical Size Segmental Bone Defects
  • ASTM E1449-92 Standard Guide for Supercritical Fluid Chromatography Terms and Relationships
  • ASTM E1449-92(2000) Standard Guide for Supercritical Fluid Chromatography Terms and Relationships
  • ASTM E1449-92(2019) Standard Guide for Supercritical Fluid Chromatography Terms and Relationships
  • ASTM E1747-95(2000) Standard Guide for Purity of Carbon Dioxide Used in Supercritical Fluid Applications
  • ASTM E1747-95 Standard Guide for Purity of Carbon Dioxide Used in Supercritical Fluid Applications
  • ASTM E1747-95(2005) Standard Guide for Purity of Carbon Dioxide Used in Supercritical Fluid Applications
  • ASTM E1747-95(2011) Standard Guide for Purity of Carbon Dioxide Used in Supercritical Fluid Applications
  • ASTM F2721-09(2023) Standard Guide for Preclinical in vivo Evaluation in Critical-Size Segmental Bone Defects
  • ASTM F2721-08 Standard Guide for Pre-clinical in vivo Evaluation in Critical Size Segmental Bone Defects
  • ASTM E1747-95(2019) Standard Guide for Purity of Carbon Dioxide Used in Supercritical Fluid Applications
  • ASTM F2721-09 Standard Guide for Pre-clinical in vivo Evaluation in Critical Size Segmental Bone Defects
  • ASTM E648-14a Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E970-10 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM E648-14c Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-15e1 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-78 Standard Test Method for Critical Radiant Flux Of Floor-Covering Systems Using A Radiant Heat Energy Source
  • ASTM E648-09 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-14b Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-08a Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-08b Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-09a Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-08 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-97e1 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-19 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-19a Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-17a Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-19ae1 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-17 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-17(2017) Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-03 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-10e1 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E970-23 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM E648-04 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-00 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-06 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E648-06a Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E970-08 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM E970-08a Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM E648-10 Standard Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ASTM E970-17e1 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM E970-00 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM F1599-95(2009) Standard Guide for Collecting Performance Data on Temporary Storage Devices
  • ASTM F1599-95(2014) Standard Guide for Collecting Performance Data on Temporary Storage Devices
  • ASTM E970-07 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM C1485-19 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using an Electric Radiant Heat Energy Source
  • ASTM E970-17 Standard Test Method for Critical Radiant Flux of Exposed Attic Floor Insulation Using a Radiant Heat Energy Source
  • ASTM F1599-95 Standard Guide for Collecting Performance Data on Temporary Storage Devices
  • ASTM F1599-95(2018) Standard Guide for Collecting Performance Data on Temporary Storage Devices

ESDU - Engineering Sciences Data Unit, thermal criticality index

  • AERO W.00.03.01 B-1994 Critical Mach number for high speed aerofoil sections.
  • ESDU 87031-1987 WING ANGLE OF ATTACK FOR ZERO LIFT AT SUBCRITICAL MACH NUMBERS
  • ESDU 87031 C-2013 Wing angle of attack for zero lift at subcritical Mach numbers
  • ESDU 87031 B-2012 Wing angle of attack for zero lift at subcritical Mach numbers
  • ESDU 88030 A-1994 Boundaries of linear characteristics of cambered and twisted wings at subcritical Mach numbers.
  • ESDU 87031 A-1999 Wing angle of attack for zero lift at subcritical Mach numbers.
  • ESDU 88001 A-1989 Boiling inside tubes: critical heat flux for flow in uniformly heated horizontal tubes.
  • ESDU 91028-1991 Simplified method for the prediction of aerofoil excrescence drag magnification factor for turbulent boundary layers at subcritical Mach numbers.
  • ESDU 87001 B-1991 Wing pitching moment at zero lift at subcritical Mach numbers.
  • ESDU 67041-1967 Drag of fighter-type canopies at subcritical Mach numbers.
  • ESDU 86032-1986 BOILING INSIDE TUBES: Critical Heat Flux for Upward Flow in Uniformly Heated Vertical Tubes
  • ESDU 86032 A-2007 Boiling inside tubes: critical heat flux for upward flow in uniformly heated vertical tubes.
  • ESDU 78019 B-1998 Profile drag of axisymmetric bodies at zero incidence for subcritical Mach numbers.
  • ESDU 78019 C-2014 Profile drag of axisymmetric bodies at zero incidence for subcritical Mach numbers
  • ESDU 79020 A-1984 The influence of body geometry and flow conditions on axisymmetric boundary layers at subcritical Mach numbers.
  • ESDU 74008 A-1975 Estimation of critical Mach number for an aerofoil from its low-speed pressure distribution.
  • ESDU 72024 C-1986 AERODYNAMIC CHARACTERISTICS OF AEROFOILS IN COMPRESSIBLE INVISCID AIRFLOW AT SUBCRITICAL MACH NUMBERS
  • ESDU 75027-1975 Critical pressure coefficient and component of local Mach number normal to the surface isobar for a swept wing.
  • ESDU 72024 D-1999 Aerodynamic characteristics of aerofoils in compressible inviscid airflow at subcritical Mach numbers.
  • ESDU 80016-1980 Vapour pressures and critical points of liquids. Introduction to Data Items issued after July 1980.
  • ESDU 84021-1984 Vapour pressures and critical points of liquids. Introduction to Data Items issued after September 1984.
  • ESDU 78037 A-1984 The influence of body geometry and flow conditions on axisymmetric velocity distributions at subcritical Mach numbers.

American National Standards Institute (ANSI), thermal criticality index

  • ANSI/ANS 8.7-1998 Nuclear Criticality Safety in the Storage of Fissile Materials, Guide for
  • ANSI/ASTM E648:2010 Test Method for Critical Radiant Flux of Floor-Covering Systems Using a Radiant Heat Energy Source
  • ANSI/NFPA 253-2011 Standard Method of Test for Critical Radiant Flux of Floor Covering Systems Using a Radiant Heat Energy Source
  • ANSI/ASTM E970:2010 Test Method For Critical Radiant Flux Of Exposed Attic Floor Insulation Using A Radiant Heat Energy Source

ANS - American Nuclear Society, thermal criticality index

  • 8.7-1975 Guide for Nuclear Criticality Safety in the Storage of Fissile Materials
  • 8.9-1978 NUCLEAR CRITICALITY SAFETY GUIDE FOR PIPE INTERSECTIONS CONTAINING AQUEOUS SOLUTIONS OF ENRICHED URANYL NITRATE

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., thermal criticality index

  • ASHRAE 4252-1999 Heat Transfer Analysis of Air-to-Carbon Dioxide Two-Phase Heat Absorption and Supercritical Heat Rejection
  • ASHRAE OR-10-056-2010 Performance of a Transcritical CO2 Heat Pump for Simultaneous Water Cooling and Heating
  • ASHRAE 4253-1999 Heat Transfer from Supercritical Carbon Dioxide in Tube Flow: a Critical Review
  • ASHRAE 4541-2002 Convective Heat Transfer from In-Tube Flow of Turbulent Supercritical Carbon Dioxide: Part 1 - Numerical Analysis (RP-913)
  • ASHRAE CH-03-13-2-2003 Heat Transfer and Pressure Drop for Condensation of Refrigerant R-404A at Near-Critical Pressures
  • ASHRAE 4542-2002 Convective Heat Transfer from In-Tube Cooling of Turbulent Supercritical Carbon Dioxide: Part 2 - Experimental Data and Numerical Predictions (RP-913)
  • ASHRAE 4504-2002 Experimental Study of Adiabatic Capillary Tubes: Critical Flow of Refrigerant/Oil Mixtures
  • ASHRAE 4473-2001 Contribution of Internal Heat Exchanger to Transcritical R-744 Cycle Performance (International Journal of HVAC&R Research)
  • ASHRAE DA-00-4-3-2000 Critical Flow of Refrigerants Through Adiabatic Capillary Tubes: Experimental Study of Zeotropic Mixtures R-407c and R-404a

American Petroleum Institute (API), thermal criticality index

工业和信息化部, thermal criticality index

  • JB/T 14047-2021 Technical conditions of ZG13Cr9Mo2Co1NiVNbNB heat-resistant steel castings for ultra-supercritical steam turbines

KR-KS, thermal criticality index

CZ-CSN, thermal criticality index

  • CSN 11 0042-1987 Circulating pumps for central heating. Critical values, methods of measurement and evaluation of noise.
  • CSN 36 1005 Cast.13-1984 Electrical appliances for household and similar use. Critical values, methods of measurement and evaluatian of noise. Electric acumulation furnaces.

API - American Petroleum Institute, thermal criticality index

  • API RP 6HT-2005 Heat Treatment and Testing of Large Cross Section and Critical Section Components (First Edition)
  • API RP 6HT-2013 Heat Treatment and Testing of Carbon and Low Alloy Steel Large Cross Section and Critical Section Components (Second Edition)

国家药监局, thermal criticality index

  • YY/T 1679-2021 Guidance for the preclinical evaluation of tissue engineered medical device products in critical size bone defects in the bone

国家能源局, thermal criticality index

  • NB/T 20537-2018 Experimental requirements for critical heat flow density of fuel assemblies in pressurized water reactor nuclear power plants

National Aeronautics and Space Administration (NASA), thermal criticality index

  • NASA-TN-D-3095-1966 Experimental heat-transfer results for cryogenic hydrogen flowing in tubes at subcritical and supercritical pressures to 800 pounds per square inch absolute
  • NASA NACA-TN-4363-1958 Simplified method for determination of critical height of distributed roughness particles for boundary-layer transition at Mach numbers from 0 to 5
  • NASA-CR-2215-1977 Two-dimensional wind-tunnel tests of a NASA supercritical airfoil with various high-lift systems Volume II - Test data

RO-ASRO, thermal criticality index

International Organization for Standardization (ISO), thermal criticality index

  • ISO 16117:2013 Nuclear criticality safety.Estimation of the number of fissions of a postulated criticality accident

Association Francaise de Normalisation, thermal criticality index

NZ-SNZ, thermal criticality index

Military Standard of the People's Republic of China-General Armament Department, thermal criticality index

  • GJB 772.306-1991 Explosives Test Methods Determination of Critical Temperature of Calorimetric Explosion of Small Charges of Solid Explosives

GB-REG, thermal criticality index

  • REG NACA-TN-2463-1951 Experimental investigation of the pressure distribution about a yawed circular cylinder in the critical Reynolds number range

IX-EU/EC, thermal criticality index

  • MEDDEV 2.7.1-2003 EVALUATION OF CLINICAL DATA: A GUIDE FOR MANUFACTURERS AND NOTIFIFIED BODIES

RU-GOST R, thermal criticality index

  • GOST 18604.9-1982 Transistors bipolar. Methods for determining cut-off frequency and transition frequency
  • GOST ISO 11843-3-2005 Statistical methods. Capability of detection. Methodology for determination of the critical value for the response variable when no calibration data are used
  • GOST 4.156-1985 System of product-quality indices. Filled-system thermometers. Solid-expansion and bimetal thermometers and themperature controllers. Nomenclature of indices
  • GOST 32893-2014 Perfumery and cosmetics. Methods of evaluation of toxicological and clinical safety indices

IN-BIS, thermal criticality index

Danish Standards Foundation, thermal criticality index

  • DS/ISO 11843-3:2003 Capability of detection - Part 3: Methodology for determination of the critical value for the response variable when no calibration data are used

未注明发布机构, thermal criticality index

  • BS ISO 11483-3:2003 Capability of detection — Part 3 : Methodology for determination of the critical value for the response variable when no calibration data are used

Institute of Electrical and Electronics Engineers (IEEE), thermal criticality index

  • NFPA (Fire) 253 Standard Method of Test for Critical Radiant Flux of Floor Covering Systems Using a Radiant Heat Energy Source, 2019 Edition

National Fire Protection Association (NFPA), thermal criticality index

  • NFPA 253-2005 Standard Method of Test for Critical Radiant Flux of Floor Covering Systems Using a Radiant Heat Energy Source 2006 Edition
  • NFPA 253-2011 Standard Method of Test for Critical Radiant Flux of Floor Covering Systems Using a Radiant Heat Energy Source Effective Date: 01/03/2011
  • NFPA 253-2015 Standard Method of Test for Critical Radiant Flux of Floor Covering Systems Using a Radiant Heat Energy Source (Effective Date: 12/01/2014)

Jilin Provincial Standard of the People's Republic of China, thermal criticality index

  • DB22/T 2874-2018 Technical regulations for multi-channel magnetic detection of oxide skin on austenitic heating surface tubes of supercritical generating set boilers

EU/EC - European Union/Commission Legislative Documents, thermal criticality index

  • MEDDEV 2.7.1 APP 1-2008 GUIDELINES ON MEDICAL DEVICES EVALUATION OF CLINICAL DATA - A GUIDE FOR MANUFACTURERS AND NOTIFIED BODIES - Appendix 1 : Clinical Evaluation of Coronary Stents (Rev 3)

US-CLSI, thermal criticality index

  • CLSI C56-A-2012 Hemolysis, Icterus, and Lipemia/Turbidity Indices as Indicators of Interference in Clinical Laboratory Analysis; Approved Guideline

American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE), thermal criticality index





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