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- W2048802151 abstract "A boiling water reactor (BWR) plant has a single loop coolant system, in which main steam generated in the reactor core proceeds directly into turbines. Consequently, radioactive 16N (6.2MeV photon emitter) contained in the steam contributes to gamma-ray skyshine dose in the vicinity of the BWR plant. The skyshine dose analysis is generally performed with the line-beam method code SKYSHINE, in which calculational geometry consists of a rectangular turbine building and a set of isotropic point sources corresponding to an actual distribution of 16N sources. For the purpose of upgrading calculational accuracy, the SKYSHINE-CG code has been developed by incorporating the combinatorial geometry (CG) routine into the SKYSHINE code, so that shielding effect of in-building equipment can be properly considered using a three-dimensional model composed of boxes, cylinders, spheres, etc. Skyshine dose rate around a 500 MWe BWR plant was calculated with both SKYSHINE and SKYSHINE-CG codes, and the calculated results w..." @default.
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- W2048802151 date "2000-03-01" @default.
- W2048802151 modified "2023-09-24" @default.
- W2048802151 title "Development of “SKYSHINE-CG” Code : A Line-Beam Method Code Equipped with Combinatorial Geometry Routine" @default.
- W2048802151 doi "https://doi.org/10.1080/00223131.2000.10874965" @default.
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