• ASTM E 1018 : 2020

    Superseded A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

    Standard Guide for Application of ASTM Evaluated Cross Section Data File

    Available format(s):  Hardcopy, PDF

    Superseded date:  20-08-2020

    Language(s):  English

    Published date:  01-03-2020

    Publisher:  American Society for Testing and Materials

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    1.1This guide covers the establishment and use of an ASTM evaluated nuclear data cross section and uncertainty file for analysis of single or multiple sensor measurements in neutron fields related to light water reactor LWR-Pressure Vessel Surveillance (PVS). These fields include in- and ex-vessel surveillance positions in operating power reactors, benchmark fields, and reactor test regions.

    1.2Requirements for establishment of ASTM-recommended cross section files address data format, evaluation requirements, validation in benchmark fields, evaluation of error estimates (covariance file), and documentation. A further requirement for components of the ASTM-recommended cross section file is their internal consistency when combined with sensor measurements and used to determine a neutron spectrum.

    1.3Specifications for use include energy region of applicability, data processing requirements, and application of uncertainties.

    1.4This guide is directly related to and should be used primarily in conjunction with Guides E482 and E944, and Practices E560, E185, and E693.

    1.5The ASTM cross section and uncertainty file represents a generally available data set for use in sensor set analysis. However, the availability of this data set does not preclude the use of other validated data, either proprietary or nonproprietary. When alternate cross section files that deviate from the requirements laid out in this standard are used, the deviations should be noted to the customer of the dosimetry application.

    1.6This 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.

    1.7This 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.

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    Committee E 10
    Document Type Guide
    Publisher American Society for Testing and Materials
    Status Superseded
    Superseded By
    Supersedes

    Standards Referenced By This Book - (Show below) - (Hide below)

    ASTM E 1297 : 2018 Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Niobium
    ASTM E 1035 : 2018 Standard Practice for Determining Neutron Exposures for Nuclear Reactor Vessel Support Structures
    ASTM E 526 : 2017 : EDT 1 Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Titanium
    ASTM E 853 : 2018 Standard Practice for Analysis and Interpretation of Light-Water Reactor Surveillance Neutron Exposure Results
    ASTM E 705 : 2018 Standard Test Method for Measuring Reaction Rates by Radioactivation of Neptunium-237
    ASTM E 263 : 2018 Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Iron
    ASTM E 264 : 2019 Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Nickel
    ASTM E 1854 : 2019 Standard Practice for Ensuring Test Consistency in Neutron-Induced Displacement Damage of Electronic Parts
    ASTM E 944 : 2019 Standard Guide for Application of Neutron Spectrum Adjustment Methods in Reactor Surveillance
    ASTM E 704 : 2019 Standard Test Method for Measuring Reaction Rates by Radioactivation of Uranium-238
    ASTM E 1005 : 2016 Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance
    ASTM E 1006 : 2013 Standard Practice for Analysis and Interpretation of Physics Dosimetry Results from Test Reactor Experiments
    ASTM E 2006 : 2016 Standard Guide for Benchmark Testing of Light Water Reactor Calculations
    ASTM E 261 : 2016 Standard Practice for Determining Neutron Fluence, Fluence Rate, and Spectra by Radioactivation Techniques
    ASTM E 265 : 2015 Standard Test Method for Measuring Reaction Rates and Fast-Neutron Fluences by Radioactivation of Sulfur-32
    ASTM E 266 : 2017 Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Aluminum
    ASTM E 482 : 2016 Standard Guide for Application of Neutron Transport Methods for Reactor Vessel Surveillance
    ASTM E 523 : 2016 Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Copper
    ASTM E 720 : 2016 Standard Guide for Selection and Use of Neutron Sensors for Determining Neutron Spectra Employed in Radiation-Hardness Testing of Electronics
    ASTM E 721 : 2016 Standard Guide for Determining Neutron Energy Spectra from Neutron Sensors for Radiation-Hardness Testing of Electronics
    ASTM E 910 : 2018 Standard Test Method for Application and Analysis of Helium Accumulation Fluence Monitors for Reactor Vessel Surveillance
    ASTM E 2956 : 2014 Standard Guide for Monitoring the Neutron Exposure of LWR Reactor Pressure Vessels
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