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논문검색

Ingestion Dose Evaluation of Korean Based on Dynamic Model in a Severe Accident

원문정보

Dahye Kwon, Won-Tae Hwang, Moosung Jae

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초록

영어

Background: In terms of the Level 3 probabilistic safety assessment (Level 3 PSA), ingestion of food that had been exposed to radioactive materials is important to assess the intermediate- and long-term radiological dose. Because the ingestion dose is considerably dependent upon the agricultural and dietary characteristics of each country, the reliability of the assessment results may become diminished if the characteristics of a foreign country are considered. Thus, this study intends to evaluate and analyze the ingestion dose of Korean during a severe accident by completely considering the available agricultural and dietary characteristics in Korea. Materials and Methods: This study uses COMIDA2, which is a program based on dynamic food chain model. It sets the parameters that are appropriate to Korean characteristics so that we can evaluate the inherent ingestion dose of Korean. The results were analyzed by considering the accident date and food category with regard to the 137Cs. Results and Discussion: The dose and contribution of the food category depicted distinctive differences based on the accident date. Particularly, the ingestion dose during the first and second years depicted a considerable difference by the accident date. However, after the third year, the effect of foliar absorption was negligible and exhibited a similar tendency along with the order of root uptake rate based on the food category. Conclusion: In this study, the agricultural and dietary characteristics of Korea were analyzed and evaluated the ingestion dose of Korean during a severe accident using COMIDA2. By considering the inherent characteristics of Korean, it can be determined that the results of this study will significantly contribute to the reliability of the Level 3 PSA.

목차

ABSTRACT
 Introduction
 Materials and Methods
  1. Food Chain Model
  2. Selection of Korean Inherent Parameters
 Results and Discussion
  1. Dose Analysis Based on the Accident Date
  2. Dose Analysis by Representative Point in Time
  3. Dose Contribution Analysis by Food categories of Representative Points in Time
 Conclusion
 References

저자정보

  • Dahye Kwon Department of Nuclear Engineering, Hanyang University, Seoul, Korea; Korea Atomic Energy Research Institute, Daejeon, Korea
  • Won-Tae Hwang Korea Atomic Energy Research Institute, Daejeon, Korea
  • Moosung Jae Department of Nuclear Engineering, Hanyang University, Seoul, Korea

참고문헌

자료제공 : 네이버학술정보

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