Norm

ISO 6980-2:2004 en

Kernenergie - Referentiestraling van beta-deeltjes - Deel 2: Grondbeginselen van kalibratie gerelateerd aan basisgrootheden die het stralingsveld karakteriseren

131,28

Over deze norm

Status Definitief
Aantal pagina's 36
Gepubliceerd op 15-10-2004
Taal Engels
This part of ISO 6980 specifies methods for the measurement of the directional absorbed-dose rate in a tissue-equivalent slab phantom in the ISO 6980 reference beta-particle radiation fields. The energy range of the beta-particle-emitting isotopes covered by these reference radiations is 0,066 to 3,54 MeV (maximum energy). Radiation energies outside this range are beyond the scope of this standard. While measurements in a reference geometry (depth of 0,07 mm at perpendicular incidence in a tissue-equivalent slab phantom) with a reference class extrapolation chamber are dealt with in detail, the use of other measurement systems and measurements in other geometries are also described, although in less detail. The ambient dose equivalent, H*(10) as used for area monitoring of strongly penetrating radiation, is not an appropriate quantity for any beta radiation, even for that penetrating a 10 mm thick layer of ICRU tissue (i.e. Emax > 2 MeV). If adequate protection is provided at 0,07 mm, only rarely will one be concerned with other depths, for example 3 mm. This document is geared towards organizations wishing to establish reference-class dosimetry capabilities for beta particles, and serves as a guide to the performance of dosimetry with the reference class extrapolation chamber for beta-particle dosimetry in other fields. Guidance is also provided on the statement of measurement uncertainties.

Details

ICS-code 17.240
Nederlandse titel Kernenergie - Referentiestraling van beta-deeltjes - Deel 2: Grondbeginselen van kalibratie gerelateerd aan basisgrootheden die het stralingsveld karakteriseren
Engelse titel Nuclear energy - Reference beta-particle radiation - Part 2: Calibration fundamentals related to basic quantities characterizingthe radiation field
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