ASTM E 853 : 2018
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
View Superseded by
Standard Practice for Analysis and Interpretation of Light-Water Reactor Surveillance Neutron Exposure Results
Hardcopy , PDF
19-10-2023
English
20-12-2018
This practice covers the methodology, summarized inAnnex A1, to be used in the analysis and interpretation of neutron exposure data obtained from LWR pressure vessel surveillance programs; and, based on the results of that analysis, establishes a formalism to be used to evaluate present and future condition of the pressure vessel and its support structures2(1-74).
Committee |
E 10
|
DocumentType |
Standard Practice
|
Pages |
9
|
ProductNote |
THIS STANDARD ALSO REFERS TO NUREG/CR-1861
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
1.1This practice covers the methodology, summarized in Annex A1, to be used in the analysis and interpretation of neutron exposure data obtained from LWR pressure vessel surveillance programs; and, based on the results of that analysis, establishes a formalism to be used to evaluate present and future condition of the pressure vessel and its support structures2 (1-74).3
1.2This practice relies on, and ties together, the application of several supporting ASTM standard practices, guides, and methods (see Master Matrix E706) (1, 5, 13, 48, 49).2 In order to make this practice at least partially self-contained, a moderate amount of discussion is provided in areas relating to ASTM and other documents. Support subject areas that are discussed include reactor physics calculations, dosimeter selection and analysis, and exposure units.
1.3This practice is restricted to direct applications related to surveillance programs that are established in support of the operation, licensing, and regulation of LWR nuclear power plants. Procedures and data related to the analysis, interpretation, and application of test reactor results are addressed in Practice E1006, Guide E900, and Practice E1035.
1.4This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.
1.5This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
ASTM E 706 : 2023 | Standard Master Matrix for Light-Water Reactor Pressure Vessel Surveillance Standards |
ASTM E 693 : 2023 | Standard Practice for Characterizing Neutron Exposures in Iron and Low Alloy Steels in Terms of Displacements Per Atom (DPA) |
ASTM E 944 : 2019 | Standard Guide for Application of Neutron Spectrum Adjustment Methods in Reactor Surveillance |
ASTM E 1005 : 2010 | Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance, E 706(IIIA) |
ASTM E 185 : 1998 | Standard Practice for Conducting Surveillance Tests for Light-Water Cooled Nuclear Power Reactor Vessels, E706 (IF) |
ASTM E 706 : 2016 | Standard Master Matrix for Light-Water Reactor Pressure Vessel Surveillance Standards |
ASTM E 2006 : 2022 | Standard Guide for Benchmark Testing of Light Water Reactor Calculations |
ASTM E 1018 : 2020 | Standard Guide for Application of ASTM Evaluated Cross Section Data File |
ASTM E 1035 : 2013 | Standard Practice for Determining Neutron Exposures for Nuclear Reactor Vessel Support Structures |
ASTM E 2956 : 2014 | Standard Guide for Monitoring the Neutron Exposure of LWR Reactor Pressure Vessels |
ASTM E 1005 : 2015 | Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance |
ASTM E 482 : 2016 | Standard Guide for Application of Neutron Transport Methods for Reactor Vessel Surveillance |
ASTM E 706 : 2023 | Standard Master Matrix for Light-Water Reactor Pressure Vessel Surveillance Standards |
ASTM E 1018 : 2009 : R2013 : EDT 1 | Standard Guide for Application of ASTM Evaluated Cross Section Data File |
ASTM E 1035 : 1985 : R1990 | Standard Practice for Determining Radiation Exposures for Nuclear Reactor Vessel Support Structures |
ASTM E 1035 : 2018 | Standard Practice for Determining Neutron Exposures for Nuclear Reactor<brk/> Vessel Support Structures |
ASTM E 2956 : 2021 | Standard Guide for Monitoring the Neutron Exposure of LWR Reactor Pressure Vessels |
ASTM E 2215 : 2015 | Standard Practice for Evaluation of Surveillance Capsules from Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 900 : 2015 : EDT 2 | Standard Guide for Predicting Radiation-Induced Transition Temperature Shift in Reactor Vessel Materials |
ASTM E 1214 : 2011 : R2018 | Standard Guide for Use of Melt Wire Temperature Monitors for Reactor Vessel Surveillance |
ASTM E 1214 : 2006 | Standard Guide for Use of Melt Wire Temperature Monitors for Reactor Vessel Surveillance, E 706 (IIIE) |
ASTM E 1214 : 1987 : R2000 | Standard Guide for Use of Melt Wire Temperature Monitors for Reactor Vessel Surveillance, E706(IIIE) |
ASTM E 944 : 1996 | Standard Guide for Application of Neutron Spectrum Adjustment Methods in Reactor Surveillance, (IIA) |
ASTM E 1006 : 1996 | Standard Practice for Analysis and Interpretation of Physics Dosimetry Results for Test Reactors, E 706(II) |
ASTM E 2006 : 1999 | Standard Guide for Benchmark Testing of Light Water Reactor Calculations |
ASTM E 2215 : 2002 | Standard Practice for Evaluation of Surveillance Capsules from Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 2215 : 2010 | Standard Practice for Evaluation of Surveillance Capsules from Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 1214 : 2011 : R2023 | Standard Guide for Use of Melt Wire Temperature Monitors for Reactor Vessel Surveillance |
ASTM E 706 : 2001 | Standard Master Matrix for Light-Water Reactor Pressure Vessel Surveillance Standards, E706(0) |
ASTM E 2006 : 2005 | Standard Guide for Benchmark Testing of Light Water Reactor Calculations |
ASTM E 1018 : 2009 | Standard Guide for Application of ASTM Evaluated Cross Section Data File, Matrix E 706 (IIB) |
ASTM E 2215 : 2016 | Standard Practice for Evaluation of Surveillance Capsules from Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 1005 : 2021 | Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance |
ASTM E 185 : 2016 | Standard Practice for Design of Surveillance Programs for Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 1006 : 2013 | Standard Practice for Analysis and Interpretation of Physics Dosimetry Results from Test Reactor Experiments |
ASTM E 1018 : 2009 : R2013 | Standard Guide for Application of ASTM Evaluated Cross Section Data File, Matrix E706 (IIB) |
ASTM E 1214 : 2011 : EDT 1 | Standard Guide for Use of Melt Wire Temperature Monitors for Reactor Vessel Surveillance |
ASTM E 1018 : 2001 | Standard Guide for Application of ASTM Evaluated Cross Section Data File, Matrix E 706 (IIB) |
ASTM E 2215 : 2019 | Standard Practice for Evaluation of Surveillance Capsules from Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 1214 : 2011 | Standard Guide for Use of Melt Wire Temperature Monitors for Reactor Vessel Surveillance, E 706 (IIIE) |
ASTM E 2006 : 2016 | Standard Guide for Benchmark Testing of Light Water Reactor Calculations |
ASTM E 1005 : 1997 | Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance, E 706(IIIA) |
ASTM E 1035 : 2018 : R2023 | Standard Practice for Determining Neutron Exposures for Nuclear Reactor Vessel Support Structures |
ASTM E 1005 : 2003 : EDT 1 | Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance, E 706(IIIA) |
ASTM E 900 : 2021 | Standard Guide for Predicting Radiation-Induced Transition Temperature Shift in Reactor Vessel Materials |
ASTM E 1035 : 2002 | Standard Practice for Determining NeutronExposures for Nuclear Reactor Vessel Support Structures |
ASTM E 185 : 2021 | Standard Practice for Design of Surveillance Programs for Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 2006 : 2010 | Standard Guide for Benchmark Testing of Light Water Reactor Calculations |
ASTM E 1006 : 2002 | Standard Practice for Analysis and Interpretation of Physics Dosimetry Results for Test Reactors, E 706(II) |
ASTM E 1006 : 2008 | Standard Practice for Analysis and Interpretation of Physics Dosimetry Results for Test Reactors, E 706(II) |
ASTM E 2215 : 2018 | Standard Practice for Evaluation of Surveillance Capsules from Light-Water Moderated Nuclear Power Reactor Vessels |
ASTM E 1018 : 2020 : EDT 1 | Standard Guide for Application of ASTM Evaluated Cross Section Data File |
ASTM E 1006 : 2021 | Standard Practice for Analysis and Interpretation of Physics Dosimetry Results from Test Reactor Experiments |
ASTM E 1035 : 2008 | Standard Practice for Determining NeutronExposures for Nuclear Reactor Vessel Support Structures |
ASTM E 1005 : 2016 | Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance |
ASTM E 1018 : 1995 | Standard Guide for Application of ASTM Evaluated Cross Section Data File, Matrix E 706 (IIB) |
ASTM E 1035 : 1985 : R1996 | Standard Practice for Determining Radiation Exposures for Nuclear Reactor Vessel Support Structures |
ASTM E 482 : 2022 | Standard Guide for Application of Neutron Transport Methods for Reactor Vessel Surveillance |
Access your standards online with a subscription
Features
-
Simple online access to standards, technical information and regulations.
-
Critical updates of standards and customisable alerts and notifications.
-
Multi-user online standards collection: secure, flexible and cost effective.