ASTM E854-19 PDF

ASTM E854-19 PDF

Name:
ASTM E854-19 PDF

Published Date:
11/01/2019

Status:
Active

Description:

Standard Test Method for Application and Analysis of Solid State Track Recorder (SSTR) Monitors for Reactor 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:
$16.8
Need Help?

1.1 This test method describes the use of solid-state track recorders (SSTRs) for neutron dosimetry in light-water reactor (LWR) applications. These applications extend from low neutron fluence to high neutron fluence, including high power pressure vessel surveillance and test reactor irradiations as well as low power benchmark field measurement. (1)2 Special attention is given to the use of state-of-the-art manual and automated track counting methods to attain high absolute accuracies. In-situ dosimetry in actual high fluence-high temperature LWR applications is emphasized.

1.2 This test method includes SSTR analysis by both manual and automated methods. To attain a desired accuracy, the track scanning method selected places limits on the allowable track density. Typically, good results are obtained in the range of 5 to 800 000 tracks/cm² and accurate results at higher track densities have been demonstrated for some cases. (2) Track density and other factors place limits on the applicability of the SSTR method at high fluences. Special care must be exerted when measuring neutron fluences (E>1MeV) above 1016 n/cm² (3) .

1.3 Low fluence and high fluence limitations exist. These limitations are discussed in detail in Sections 13 and 14 and in Refs (3-5).

1.4 SSTR observations provide time-integrated reaction rates. Therefore, SSTRs are truly passive-fluence detectors. They provide permanent records of dosimetry experiments without the need for time-dependent corrections, such as decay factors that arise with radiometric monitors.

1.5 Since SSTRs provide a spatial record of the time-integrated reaction rate at a microscopic level, they can be used for “fine-structure” measurements. For example, spatial distributions of isotopic fission rates can be obtained at very high resolution with SSTRs.

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 , 320 KB
Note : This product is unavailable in Russia, Ukraine, Belarus
Number of Pages : 16
Published : 11/01/2019
Redline File Size : 2 files , 770 KB

History

ASTM E854-19
Published Date: 11/01/2019
Standard Test Method for Application and Analysis of Solid State Track Recorder (SSTR) Monitors for Reactor Surveillance
$16.8
ASTM E854-14
Published Date: 07/01/2014
Standard Test Method for Application and Analysis of Solid State Track Recorder (SSTR) Monitors for Reactor Surveillance, E706(IIIB)
$19.5
ASTM E854-03(2009)
Published Date: 06/01/2009
Standard Test Method for Application and Analysis of Solid State Track Recorder (SSTR) Monitors for Reactor Surveillance, E706(IIIB)
$20.1
ASTM E854-03
Published Date: 02/10/2003
Standard Test Method for Application and Analysis of Solid State Track Recorder (SSTR) Monitors for Reactor Surveillance, E706(IIIB)
$20.1
ASTM E854-98
Published Date: 01/10/1998
Standard Test Method for Application and Analysis of Solid State Track Recorder (SSTR) Monitors for Reactor Surveillance, E706(IIIB)
$19.5

Related products

ASTM E1160-13(2021)
Published Date: 01/01/2021
Standard Guide for On-Site Inspection and Verification of Operation of Solar Domestic Hot Water Systems
$15.6
ASTM E881-92(2022)
Published Date: 10/01/2022
Standard Practice for Exposure of Solar Collector Cover Materials to Natural Weathering Under Conditions Simulating Stagnation Mode
$17.1
ASTM E1026-13
Published Date: 01/01/2013
Standard Practice for Using the Fricke Dosimetry System
$17.4
ASTM E521-23
Published Date: 06/01/2023
Standard Practice for Investigating the Effects of Neutron Radiation Damage Using Charged-Particle Irradiation
$24.6

Best-Selling Products

PLAN PLAN ANALYST BEAM & COLUM
Published Date: 01/01/2000
PLAN ANALYST BEAM & COLUMN CALCULATOR SOFTWARE
PLAN PLAN ANALYST IBC & IRC
Published Date: 01/01/2006
PLAN ANALYST SOFTWARE COMBO FOR THE INTERNATIONAL BUILDING CODE (IBC) AND THE INTERNATIONAL RESIDENTIAL CODE (IRC)
PLAN PLAN ANALYST NFPA 13
Published Date: 01/01/1996
PLAN ANALYST SOFTWARE FOR NFPA 13 - STANDARD FOR THE INSTALLATION OF SPRINKLER SYSTEMS
PLAN PLAN ANALYST SIGN CALC
Published Date: 01/01/2000
PLAN ANALYST SIGN CALCULATOR SOFTWARE