DocumentCode
2784829
Title
A three-scales model for the dispersion of radioactive spots from nuclear emergencies. Application to the Baltic sea after the accident of Chernobyl
Author
Toscano-Jimenez, M. ; Garcia-Tenorio, R.
Author_Institution
Dpto. de Fisica Aplicada III, Escuela Superior de Ingenieros, Sevilla
Volume
4
fYear
2004
fDate
9-12 Nov. 2004
Firstpage
2362
Abstract
This model is a improved version of a previously published two-scales model (Toscano-Jimenez and Garcia-Tenorio, 2004) and includes the transport of particles in three spatial scales: small (kilometres), medium (decades of Arm), and large (hundreds of km). A 3D dispersion model has been developed to analyse and simulate the dispersion of nuclear contaminants in marine ecosystems. This model is characterized by presenting high spatial resolution, by taking into account the possible binding of a fraction of the contaminants to the suspended matter as well as its consequent sedimentation, and especially by formulating the diffusion processes using an original approach. The horizontal resolution of the model is 20 km, while for the vertical resolution a total of six layers are considered. The Baltic sea has been elected as the validation scenario of the model and the radionuclide Cs-137 as the radiotracer to be analysed. This scenario was the most contaminated ecosystem out of the Soviet Union due to the Chernobyl accident occurred at the end of April 1986, and the elected radiotracer Cs-137 was the main long-lived radioisotope emitted to the environment. A computation time of approximately 9 hours by using a Matlab code in a personal computer (AMD-1.4 GHz) was necessary. Different classical tools in oceanography as well as different numerical methods (Monte Carlo, finite differences) have been properly implemented in the model. The approaches adopted allow to save a lot of computational time (Toscano-Jimenez and Garcia-Tenorio,2003)
Keywords
Monte Carlo methods; caesium; finite difference methods; marine pollution; oceanographic regions; radioisotopes; sedimentation; 3D dispersion model; AD 1986 04; Baltic sea; Chernobyl; Cs; Cs-137; Matlab code; Monte Carlo method; Soviet Union; computational time; diffusion process; ecosystem contamination; finite difference method; horizontal resolution; marine ecosystems; nuclear contaminants; nuclear emergency; numerical methods; oceanography; particle transport; radioactive spots dispersion; radioisotope; radionuclide; radiotracer; sedimentation; spatial resolution; spatial scales; three-scale model; two-scales model; vertical resolution; Accidents; Analytical models; Diffusion processes; Ecosystems; Finite difference methods; Mathematical model; Microcomputers; Monte Carlo methods; Radioactive materials; Spatial resolution;
fLanguage
English
Publisher
ieee
Conference_Titel
OCEANS '04. MTTS/IEEE TECHNO-OCEAN '04
Conference_Location
Kobe
Print_ISBN
0-7803-8669-8
Type
conf
DOI
10.1109/OCEANS.2004.1406525
Filename
1406525
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