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Study on the Estimation of Probabilistic Effective Dose: Committed Effective Dose from Intake of Marine Products Using Oceanic General Circulation Model

机译:概率有效剂量估算研究:利用海洋一般循环模型从海洋产品摄入的有效剂量

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The worldwide environmental protection is required by the public. A long-term environmental assessment from nuclear fuel cycle facilities to the aquatic environment also becomes more important to utilize nuclear energy more efficiently. Evaluation of long-term risk including not only in Japan but also in neighboring countries is considered to be necessary in order to develop nuclear power industry. The author successfully simulated the distribution of radionuclides in seawater and seabed sediment produced by atmospheric nuclear tests using LAMER (Long-term Assessment ModEl for Radioactivity in the oceans). A part of the LAMER calculated the advection- diffusion-scavenging processes for radionuclides in the oceans and the Japan Sea in cooperate with Oceanic General Circulation Model (OGCM) and was validated. The author is challenging to calculate probabilistic effective dose suggested by ICRP from intake of marine products due to atmospheric nuclear tests using the Monte Carlo method in the other part of LAMER. Depending on the deviation of each parameter, the 95th percentile of the probabilistic effective dose was calculated about half of the 95th percentile of the deterministic effective dose in proforma calculation. The probabilistic assessment gives realistic value for the dose assessment of a nuclear fuel cycle facility.
机译:全球环境保护是公众所要求的。从核燃料循环设施到水生环境的长期环境评估也变得更加重要,而且更有效地利用核能。评估长期风险,包括不仅在日本而且在邻国的长期风险被认为是必要的,以便开发核电行业。作者成功模拟了使用Lame的大气核试验生产的海水和海底沉积物的放射性核素分布(长期评估海洋放射性的远程评估模型)。其中一部分Lamer计算了海洋和日本海洋中放射性核素的平程 - 扫描过程,与海洋一般循环模型(OGCM)合作,并经过验证。提交人挑战,计算ICRP提出的概率有效剂量,由于雷米机的另一部分中的蒙特卡罗方法,由于大气核试验而导致的海洋产品。根据每个参数的偏差,概率有效剂量的第95百分位数计算了95百分位数在形式计算的确定性有效剂量的第95百分位数的一半。概率评估为核燃料循环设施的剂量评估提供了现实价值。

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