Published March 1981 | Version v1
Journal article

Simulation of short-term fluctuations in gamma exposure rate due to radioactive cloud released from nuclear power plant

  • 1. Central Research Inst. of Electric Power Industry, Tokyo (Japan)

Description

The measured γ-exposure rate around nuclear power plants is due mainly to natural causes and radioactive clouds emitted from the plants. An exposure calculation method based on puff model has been already proposed to identify the plant contributions and to estimate values in response to short-term fluctuations of meteorological condition and the release rate. However, the calculation method by this model consumes a lot of computer time, since the calculation requires a three-dimensional integration of the distribution of the concentration from each puff. Hence, we propose a simplified method using approximate polynominal equations and interpolations. The computer time needed for the calculation with the simplified method is reduced to 1/30 of that required by the previous method. The calculation results by simplified method are compared with those by the previous method and with the measured exposure rate less natural background. The results of two different methods are in good agreement. The calculated exposure rate is within the range from half to twice as much as the measured exposure rate less background. (author)

Availability note (English)

Available from DOI: https://doi.org/10.3327/jaesj.23.212

Abstract (Japanese)

気象条件、排出条件の短時間変動に対応させて放射性雲寄与線量を評価するのに、著者らは、非定常な拡散現象を表わしうるパフモデルを用いて行なったが、個々のハフについて濃度分布を直接空間積分して線量を求める力法をとったため多くの計算時間を費やし、リアルタイムの線量率監視モデルとして用いる上で問題が残っていた。本報では、計算時間短縮のため濃度分布を直接空間積分せず、パフの拡がりの大きさとパフの中心から評価地点までの距離から簡便に照射線量率が求まるように許容精度内でモデルを簡略化し、放射性雲による線量率をリアルタイムで監視できる実用化モデルの提案を行う。 (日本)

Additional details

Additional titles

Original title (Japanese)
原子力発電所からの放射性雲によるγ線照射線量率の短時間変動特性の評価方法

Identifiers

Publishing Information

Journal Title
Nippon Genshiryoku Gakkai-Shi
Journal Volume
23
Journal Issue
3
Journal Page Range
p. 212-219
ISSN
0004-7120

Optional Information

Notes
1566500; This record replaces 13696086