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Impact of switching to the ICRP-74 neutron flux-to-dose equivalent rate conversion factors at the Sandia National Laboratory Building 818 Neutron Source Range.
Author(s) -
Dann C. Ward
Publication year - 2009
Language(s) - English
Resource type - Reports
DOI - 10.2172/983697
Subject(s) - neutron flux , neutron , nist , calibration , equivalent dose , nuclear engineering , dosimetry , physics , nuclear physics , radiation protection , neutron source , radiation , neutron transport , nuclear medicine , engineering , computer science , medicine , quantum mechanics , natural language processing
Sandia National Laboratories (SNL) maintains a neutron calibration facility which supports the calibration, maintenance, and repair of Radiation Protection Instruments. The SNL neutron reference fields are calibrated using the following methodology: Fluence rate is initially established by calculation using the NIST traceable source emission rate (decay corrected). Correction factors for the effects of room return or scatter, and source anisotropy are then developed by using a suitable radiation transport code to model the geometry of the facility. The conventionally true neutron dose rates are then determined using the appropriate fluence-todose equivalent conversion coefficients at several reference positions. This report describes the impact on calculated neutron dose rates of switching from NCRP-38 to CRP-74 neutron flux-todose equivalent rate conversion factors. This switch is driven by recent changes to dosimetry requirements addressed in 10 CFR 835 (Occupational Radiation Protection).

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