Standard Guide for Benchmark Testing of Reactor Dosimetry in Standard and Reference Neutron Fields

SCOPE
1.1 This guide covers facilities and procedures for benchmarking neutron measurements and calculations. Particular sections of the guide discuss: the use of well-characterized benchmark neutron fields to calibrate integral neutron sensors; the use of certified-neutron-fluence standards to calibrate radiometric counting equipment or to determine interlaboratory measurement consistency; development of special benchmark fields to test neutron transport calculations; use of well-known fission spectra to benchmark spectrum-averaged cross sections; and the use of benchmarked data and calculations to determine the uncertainties in derived neutron dosimetry results.

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Historical
Publication Date
31-Dec-2004
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Ref Project

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ASTM E2005-05 - Standard Guide for Benchmark Testing of Reactor Dosimetry in Standard and Reference Neutron Fields
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NOTICE: This standard has either been superseded and replaced by a new version or withdrawn.
Contact ASTM International (www.astm.org) for the latest information
Designation:E2005–05
Standard Guide for
Benchmark Testing of Reactor Dosimetry in Standard and
1
Reference Neutron Fields
This standard is issued under the fixed designation E 2005; the number immediately following the designation indicates the year of
original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. A
superscript epsilon (e) indicates an editorial change since the last revision or reapproval.
1. Scope E 523 Test Methods for Measuring Fast-Neutron Reaction
Rates by Radioactivation of Copper
1.1 This guide covers facilities and procedures for bench-
E 526 Test Methods for Measuring Fast-Neutron Reaction
marking neutron measurements and calculations. Particular
Rates by Radioactivation of Titanium
sections of the guide discuss: the use of well-characterized
E 704 Test Methods for Measuring Fast-Neutron Reaction
benchmark neutron fields to calibrate integral neutron sensors;
Rates by Radioactivation of Uranium-238
the use of certified-neutron-fluence standards to calibrate
E 705 Test Methods for Measuring Fast-Neutron Reaction
radiometriccountingequipmentortodetermineinterlaboratory
Rates by Radioactivation of Neptunium-237
measurement consistency; development of special benchmark
E 854 Test Method for Application and Analysis of Solid
fields to test neutron transport calculations; use of well-known
State Track Recorder (SSTR) Monitors for Reactor Sur-
fissionspectratobenchmarkspectrum-averagedcrosssections;
veillance, E 706 (IIIB)
and the use of benchmarked data and calculations to determine
E 910 Test Method forApplication andAnalysis of Helium
the uncertainties in derived neutron dosimetry results.
Accumulation Fluence Monitors for Reactor Vessel Sur-
2. Referenced Documents veillance, E 706 (IIIC)
2
E 1297 Test Method for Measuring Fast-Neutron Reaction
2.1 ASTM Standards:
Rates by Radioactivation of Niobium
E 170 Terminology Relating to Radiation Measurements
E 2006 Guide for Benchmark Testing of Light Water Reac-
and Dosimetry
tor Calculations
E 261 Practice for Determining Neutron Fluence Rate, and
Spectra by Radioactivation Techniques
3. Significance and Use
E 263 Test Methods for Measuring Fast-Neutron Reaction
3.1 This guide describes approaches for using neutron fields
Rates by Radioactivation of Iron
with well known characteristics to perform calibrations of
E 264 Test Methods for Measuring Fast-Neutron Reaction
neutron sensors, to intercompare different methods of dosim-
Rates by Radioactivation of Nickel
etry, and to corroborate procedures used to derive neutron field
E 265 Test Methods for Measuring Fast-Neutron Reaction
information from measurements of neutron sensor response.
Rates by Radioactivation of Sulfur-32
3.2 This guide discusses only selected standard and refer-
E 266 Test Methods for Measuring Fast-Neutron Reaction
ence neutron fields which are appropriate for benchmark
Rates by Radioactivation of Aluminum
testing of light-water reactor dosimetry. The Standard Fields
E 343 Test Methods for Measuring Reaction Rates by
considered are neutron source environments that closely ap-
Analysis of Molybdenum 99Activity from Fission Dosim-
252
proximate the unscattered neutron spectra from Cf sponta-
eters
235
neous fission and U thermal neutron induced fission. These
E 393 Test Methods for Measuring Reaction Rates by
standard fields were chosen for their spectral similarity to the
Analysis of Barium-140 from Fission Dosimeters
highenergyregion(E>2MeV)ofreactorspectra.Thevarious
E 482 Guide forApplication of Neutron Transport Methods
categories of benchmark fields are defined in Terminology
for Reactor Vessel Surveillance, E 706 (IID)
E 170.
3.3 There are other well known neutron fields that have
1
This practice is under the jurisdiction of ASTM Committee E10 on Nuclear
been designed to mockup special environments, such as
Technology and Applications and is the direct responsibility of Subcommittee
pressure vessel mockups in which it is possible to make
E10.05 on Nuclear Radiation Metrology .
dosimetry measurements inside of the steel volume of the
Current edition approved Jan. 1, 2005. Published February 2005. Originally
“vessel.” When such mockups are suitably characterized they
approved in 1999. Last previous edition approved in 1999 as E 2005 - 99.
2
For referenced ASTM standards, visit the ASTM website, www.astm.org, or
are also referred to as benchmark fields. A variety of these
contact ASTM Customer Service at service@astm.org. For Annual Book of ASTM
engineering benchmark fields have been developed, or pressed
Standards volume information, refer to the standard’s Document Summary page on
the ASTM website.
Copyright © ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.
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