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Calculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integration

The radiological impact of emissions of radioactive substances from accelerator facilities is characterized by a dominant contribution of the external exposure from short-lived radionuclides in the plume. Ventilation outlets of accelerator facilities are often at low emission heights and receptors r...

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Autor principal: Vojtyla, P
Lenguaje:eng
Publicado: 2005
Materias:
Acceso en línea:http://cds.cern.ch/record/1113287
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author Vojtyla, P
author_facet Vojtyla, P
author_sort Vojtyla, P
collection CERN
description The radiological impact of emissions of radioactive substances from accelerator facilities is characterized by a dominant contribution of the external exposure from short-lived radionuclides in the plume. Ventilation outlets of accelerator facilities are often at low emission heights and receptors reside very close to stacks. Simplified exposure models are not appropriate and integration of the dose kernel over the radioactive plume is required. By using Monte Carlo integration with certain biasing, the integrand can be simplified substantially and an optimum spatial resolution can be achieved. Moreover, long-term releases can be modeled by sampling real weather situations. The mathematical formulation does not depend on any particular atmospheric dispersion model and the applicable code parts can be designed separately, which is another advantage. The obtained results agree within ±10% with results calculated for the semi-infinite cloud model by using detailed particle transport codes and human phantoms.
id cern-1113287
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2005
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spelling cern-11132872019-09-30T06:29:59Zhttp://cds.cern.ch/record/1113287engVojtyla, PCalculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integrationHealth Physics and Radiation EffectsThe radiological impact of emissions of radioactive substances from accelerator facilities is characterized by a dominant contribution of the external exposure from short-lived radionuclides in the plume. Ventilation outlets of accelerator facilities are often at low emission heights and receptors reside very close to stacks. Simplified exposure models are not appropriate and integration of the dose kernel over the radioactive plume is required. By using Monte Carlo integration with certain biasing, the integrand can be simplified substantially and an optimum spatial resolution can be achieved. Moreover, long-term releases can be modeled by sampling real weather situations. The mathematical formulation does not depend on any particular atmospheric dispersion model and the applicable code parts can be designed separately, which is another advantage. The obtained results agree within ±10% with results calculated for the semi-infinite cloud model by using detailed particle transport codes and human phantoms.CERN-SC-2005-008-IE-PPoai:cds.cern.ch:11132872005-08-31
spellingShingle Health Physics and Radiation Effects
Vojtyla, P
Calculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integration
title Calculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integration
title_full Calculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integration
title_fullStr Calculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integration
title_full_unstemmed Calculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integration
title_short Calculation of the external effective dose from a radioactive plume by using Monte Carlo dose kernel integration
title_sort calculation of the external effective dose from a radioactive plume by using monte carlo dose kernel integration
topic Health Physics and Radiation Effects
url http://cds.cern.ch/record/1113287
work_keys_str_mv AT vojtylap calculationoftheexternaleffectivedosefromaradioactiveplumebyusingmontecarlodosekernelintegration