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1.
J Environ Radioact ; 100(7): 564-73, 2009 Jul.
Article in English | MEDLINE | ID: mdl-19427718

ABSTRACT

The impact on a population from an event resulting in dispersal and deposition of radionuclides in an urban area could be significant, in terms of both the number of people affected and the economic costs of recovery. The use of computer models for assessment of urban contamination situations and remedial options enables the evaluation of a variety of situations or alternative recovery strategies in contexts of preparedness or decision-making. At present a number of models and modelling approaches are available for different purposes. This paper summarizes the available modelling approaches, approaches for modelling countermeasure effectiveness, and current sources of information on parameters related to countermeasure effectiveness. Countermeasure information must be applied with careful thought as to its applicability for the specific situation being modelled. Much of the current information base comes from the Chernobyl experience and would not be applicable for all types of situations.


Subject(s)
Cities , Environmental Restoration and Remediation/methods , Models, Theoretical , Environmental Pollutants/analysis , Environmental Pollutants/metabolism , Radiation Monitoring/methods
2.
J Environ Radioact ; 100(5): 413-21, 2009 May.
Article in English | MEDLINE | ID: mdl-19324477

ABSTRACT

The Urban Remediation Working Group of the International Atomic Energy Agency's EMRAS (Environmental Modelling for Radiation Safety) program was organized to address issues of remediation assessment modelling for urban areas contaminated with dispersed radionuclides. The present paper describes the first of two modelling exercises, which was based on Chernobyl fallout data in the town of Pripyat, Ukraine. Modelling endpoints for the exercise included radionuclide concentrations and external dose rates at specified locations, contributions to the dose rates from individual surfaces and radionuclides, and annual and cumulative external doses to specified reference individuals. Model predictions were performed for a "no action" situation (with no remedial measures) and for selected countermeasures. The exercise provided a valuable opportunity to compare modelling approaches and parameter values, as well as to compare the predicted effectiveness of various countermeasures with respect to short-term and long-term reduction of predicted doses to people.


Subject(s)
Chernobyl Nuclear Accident , Environmental Restoration and Remediation/methods , Models, Theoretical , Radioactive Pollutants , Urban Health , Computer Simulation , Ukraine
3.
Appl Radiat Isot ; 66(11): 1741-4, 2008 Nov.
Article in English | MEDLINE | ID: mdl-18513982

ABSTRACT

The Urban Remediation Working Group of the International Atomic Energy Agency's Environmental Modelling for Radiation Safety (EMRAS) programme was established to improve modelling and assessment capabilities for radioactively contaminated urban situations, including the effects of countermeasures. An example of the Working Group's activities is an exercise based on Chernobyl fallout data in Ukraine, which has provided an opportunity to compare predictions among several models and with available measurements, to discuss reasons for discrepancies, and to identify areas where additional information would be helpful.


Subject(s)
Cities , Environmental Exposure/analysis , Environmental Exposure/prevention & control , Models, Biological , Radiation Monitoring/methods , Radiation Protection/methods , Body Burden , Computer Simulation , Humans , International Agencies/organization & administration , Radiation Dosage , Reproducibility of Results , Sensitivity and Specificity
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