Back to Search Start Over

ESTIMATION OF THE GAMMA-RAY FIELD IN AIR FROM RADIOACTIVE SOURCES IN THE GROUND BY NUMERICAL SOLUTION OF THE BOLTZMANN TRANSPORT EQUATION

Authors :
Boubaker Askri
Kais Manai
Ahlem Bouzouita
Emna Zaidi
Adel Trabelsi
Source :
Radiation Protection Dosimetry. 199:631-645
Publication Year :
2023
Publisher :
Oxford University Press (OUP), 2023.

Abstract

Gamma-ray field in air from radioactive sources uniformly distributed in the ground is calculated by numerically solving the photon transport equation. The scattered flux is developed on the Legendre polynomials basis of the spherical harmonics method and a double P1 approximation is applied. The method is implemented in the Octave programming package. The calculation of the gamma-ray field is also done by Monte Carlo simulation using an optimised geometry model of the soil-air medium that is implemented in Geant4 simulation code. The results obtained by the two methods are in good agreement. The computing time for the spherical harmonics deterministic method is significantly less than the Monte Carlo simulation. Dose rate conversion factors in the air are calculated for the natural radioactive series of 238U and 232Th and for 40K nuclide and for soils contaminated by various radionuclides. The results are in agreement with the published theoretical and experimental studies.

Details

ISSN :
17423406 and 01448420
Volume :
199
Database :
OpenAIRE
Journal :
Radiation Protection Dosimetry
Accession number :
edsair.doi...........55db9da4b3ab1e8ac86049884d678500
Full Text :
https://doi.org/10.1093/rpd/ncad064