ASTM E1005-21 PDF

ASTM E1005-21 PDF

Name:
ASTM E1005-21 PDF

Published Date:
09/01/2021

Status:
Active

Description:

Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance

Publisher:
ASTM International

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

SKU:

Choose Document Language:
$18
Need Help?

1.1''This test method describes procedures for measuring the specific activities of radioactive nuclides produced in radiometric monitors (RMs) by nuclear reactions induced during surveillance exposures for reactor vessels and support structures. More detailed procedures for individual RMs are provided in separate standards identified in 2.1 and in Refs (1-5).2 The measurement results can be used to define corresponding neutron induced reaction rates that can in turn be used to characterize the irradiation environment of the reactor vessel and support structure. The principal measurement technique is high resolution gamma-ray spectrometry, although X-ray photon spectrometry and Beta particle counting are used to a lesser degree for specific RMs (1-29).

1.1.1''The measurement procedures include corrections for detector background radiation, random and true coincidence summing losses, differences in geometry between calibration source standards and the RMs, self absorption of radiation by the RM, other absorption effects, radioactive decay corrections, and burn out of the nuclide of interest (6-26).

1.1.2''Specific activities are calculated by taking into account the time duration of the count, the elapsed time between start of count and the end of the irradiation, the half life, the mass of the target nuclide in the RM, and the branching intensities of the radiation of interest. Using the appropriate half life and known conditions of the irradiation, the specific activities may be converted into corresponding reaction rates (2-5, 28-30).

1.1.3''Procedures for calculation of reaction rates from the radioactivity measurements and the irradiation power time history are included. A reaction rate can be converted to neutron fluence rate and fluence using the appropriate integral cross section and effective irradiation time values, and, with other reaction rates can be used to define the neutron spectrum through the use of suitable computer programs (2-5, 28-30).

1.1.4''The use of benchmark neutron fields for calibration of RMs can reduce significantly or eliminate systematic errors since many parameters, and their respective uncertainties, required for calculation of absolute reaction rates are common to both the benchmark and test measurements and therefore are self canceling. The benchmark equivalent fluence rates, for the environment tested, can be calculated from a direct ratio of the measured saturated activities in the two environments and the certified benchmark fluence rate (2-5, 28-30).

1.2''This test method is intended to be used in conjunction with ASTM Guide E844 and existing or proposed ASTM practices, guides, and test methods that are also directly involved in the physics-dosimetry evaluation of reactor vessel and support structure surveillance measurements.

1.3''The procedures in this test method are applicable to the measurement of radioactivity in RMs that satisfy the specific constraints and conditions imposed for their analysis. More detailed procedures for individual RM monitors are identified in 2.1 and in Refs 1-5 (see Table 1).

1.4''This test method, along with the individual RM monitor standard methods, are intended for use by knowledgeable persons who are intimately familiar with the procedures, equipment, and techniques necessary to achieve high precision and accuracy in radioactivity measurements.

1.5''The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard, except for the energy units based on the electron volt, keV and MeV, and the time units: minute (min), hour (h), day (d), and year (a).

1.6''This 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.

1.7''This 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.


File Size : 1 file , 180 KB
Note : This product is unavailable in Russia, Ukraine, Belarus
Number of Pages : 11
Published : 09/01/2021
Redline File Size : 2 files , 330 KB

History

ASTM E1005-21
Published Date: 09/01/2021
Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance
$18
ASTM E1005-10
Published Date: 01/01/2010
Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance, E 706(IIIA)
$17.4
ASTM E1005-03e1
Published Date: 02/10/2003
Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance, E 706(IIIA)
$17.4
ASTM E1005-03
Published Date: 02/10/2003
Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance, E 706(IIIA)
$17.4
ASTM E1005-97
Published Date: 06/10/1997
Standard Test Method for Application and Analysis of Radiometric Monitors for Reactor Vessel Surveillance, E 706(IIIA)
$17.4

Related products

ASTM F1356-22
Published Date: 01/15/2022
Standard Guide for Irradiation of Fresh, Frozen or Processed Meat and Poultry to Control Pathogens and Other Microorganisms
$16.2
ASTM E264-19
Published Date: 04/01/2019
Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Nickel
$14.4
ASTM E904-87(2007)
Published Date: 03/01/2007
Standard Practice for Generating All-Day Thermal Performance Data for Solar Collectors (Withdrawn 2013)
$15.6
ASTM E2450-23
Published Date: 01/01/2023
Standard Practice for Application of CaF2(Mn) Thermoluminescence Dosimeters in Mixed Neutron-Photon Environments
$17.1

Best-Selling Products

ANSI/IEC 60529-2004 (R2011)
Published Date: 2004
Degrees of Protection Provided by Enclosures (IP Code)
$42
ANSI/IEC 60529-2020
Published Date: 2020
Degrees of Protection Provided by Enclosures (IP Code)(Identical National Adoption)
$81.6
ANSI/IEC 60974-1-2008
Published Date: 2008
American National Standard for Arc-Welding Equipment - Part 1: Welding Power Sources
$67.2
ANSI/IEC 60974-1-2019 (R2023)
Published Date: 12/13/2019
American National Standard for Arc-Welding Equipment - Part 1: Welding Power Sources
$138.6
ANSI/IEC 60974-11-2009 (R2020)
Published Date: 2009
American National Standard for Arc-Welding Equipment -- Part 11: Electrode Holders
$27.9
ANSI/IEC 60974-12-2009 (R2020)
Published Date: 2009
American National Standard for Arc-Welding Equipment -- Part 12: Coupling Devices for Welding Cables
$81.3