Assessment of environmental public exposure from a hypothetical nuclear accident for Unit-1 Bushehr nuclear power plant
- 1. Amirkabir University of Technology, Health Physics and Dosimetry Research Laboratory, Department of Physics, Tehran (Iran, Islamic Republic of)
Description
Unit-1 of the Bushehr nuclear power plant (BNPP-1) is a VVER-type reactor with 1,000-MWe power constructed near Bushehr city at the coast of the Persian Gulf, Iran. The reactor has been recently operational to near its full power. The radiological impact of nuclear power plant (NPP) accidents is of public concern, and the assessment of radiological consequences of any hypothetical nuclear accident on public exposure is vital. The hypothetical accident scenario considered in this paper is a design-basis accident, that is, a primary coolant leakage to the secondary circuit. This scenario was selected in order to compare and verify the results obtained in the present paper with those reported in the Final Safety Analysis Report (FSAR 2007) of the BNPP-1 and to develop a well-proven methodology that can be used to study other and more severe hypothetical accident scenarios for this reactor. In the present study, the version 2.01 of the PC COSYMA code was applied. In the early phase of the accidental releases, effective doses (from external and internal exposures) as well as individual and collective doses (due to the late phase of accidental releases) were evaluated. The surrounding area of the BNPP-1 within a radius of 80 km was subdivided into seven concentric rings and 16 sectors, and distribution of population and agricultural products was calculated for this grid. The results show that during the first year following the modeled hypothetical accident, the effective doses do not exceed the limit of 5 mSv, for the considered distances from the BNPP-1. The results obtained in this study are in good agreement with those in the FSAR-2007 report. The agreement obtained is in light of many inherent uncertainties and variables existing in the two modeling procedures applied and proves that the methodology applied here can also be used to model other severe hypothetical accident scenarios of the BNPP-1 such as a small and large break in the reactor coolant system as well as beyond design-basis accidents. Such scenarios are planned to be studied in the near future, for this reactor. (orig.)
Availability note (English)
Available from: http://dx.doi.org/10.1007/s00411-013-0456-yAdditional details
Identifiers
Publishing Information
- Journal Title
- Radiation and Environmental Biophysics
- Journal Volume
- 52
- Journal Issue
- 2
- Journal Page Range
- p. 235-244
- ISSN
- 0301-634X
- CODEN
- REBPAT
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- Germany
- INIS RN
- 48061351
- Subject category
- S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS; S63: RADIATION, THERMAL, AND OTHER ENVIRONMENTAL POLLUTANT EFFECTS ON LIVING ORGANISMS AND BIOLOGICAL MATERIALS;
- Descriptors DEI
- AGRICULTURE; ATMOSPHERIC CIRCULATION; COOLANT LOOPS; DESIGN-BASIS ACCIDENTS; DETERMINISTIC ESTIMATION; ENVIRONMENTAL EXPOSURE PATHWAY; FISSION PRODUCT RELEASE; GROUND WATER; HYPOTHETICAL ACCIDENTS; IRAN-1 REACTOR; PERSIAN GULF; PROBABILISTIC ESTIMATION; PUBLIC HEALTH; RADIATION DOSES; RADIATION HAZARDS; RADIONUCLIDE MIGRATION; REACTOR ACCIDENTS; SAFETY ANALYSIS; THYROID
- Descriptors DEC
- ACCIDENTS; ARABIAN SEA; BODY; CALCULATION METHODS; COOLING SYSTEMS; DOSES; ENDOCRINE GLANDS; ENERGY SYSTEMS; ENRICHED URANIUM REACTORS; ENVIRONMENTAL TRANSPORT; GLANDS; HAZARDS; HEALTH HAZARDS; HYDROGEN COMPOUNDS; INDIAN OCEAN; MASS TRANSFER; ORGANS; OXYGEN COMPOUNDS; POWER REACTORS; PWR TYPE REACTORS; REACTORS; SEAS; SURFACE WATERS; THERMAL REACTORS; WATER; WATER COOLED REACTORS; WATER MODERATED REACTORS