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State of SAMPSON Code Development for the Analysis of Fukushima Daiichi Severe Accident

机译:桑普森代码开发状态分析福岛达奇伊严重事故

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Severe accident computer codes historically treat the accident with coarse correlations in order to connect main variables to major events, resulting in a fast running code to perform a large number of simulations and sensitivity analyses. After the three core melt-down at the Fukushima power station it was acknowledged that the complex phenomena involved into a long station black-out must be studied in more detail, in order to provide meticulous information of accident progression to increase plant reliability and operator's resilience in the unlike case that the accident occurs. SAMPSON in this direction is a severe accident computer code developed at the Institute of Applied Energy with a mechanistic approach to treat every phenomenon with deeper accuracy compared to historical codes. SAMPSON, due to the very different time and length scales between phenomena composing the accident, is composed of hierarchical modules to account for the diverse physics involved in the various phases of the accident evolution. The paper shows SAMPSON first phase of analysis of Fukushima Daiichi units 1, 2 and 3, in which the code has proven not only realistic agreement with measurement data but has also provided important information for scenario reconstruction and given fundamental support in the decommissioning phase required by the Japanese government.
机译:严重事故的计算机代码历史治疗与粗相关的事故,以主要变量连接到主要事件,从而导致快速运行的代码来执行大量的模拟和灵敏度的分析。三大核心之后熔毁在福岛电站他们承认参与到长台黑色时的复杂现象,必须进行更详细的研究,以提供事故的进展,以提高工厂的可靠性和操作弹性细致的信息在不同情况下发生的事故。桑普森在这个方向是应用能源研究所与机械方法相比,历史与代码更深的精度来对待每一位开发现象严重事故的计算机代码。桑普森由于现象之间的非常不同的时间和长度尺度组成的事故,由分级模块来占参与事故演化的各个阶段的各种物理。本文示出了桑普森的福岛第一单元1,2和3的分析第一阶段,其中,所述代码已被证明不仅与测量数据现实协议,但也提供了重要信息的场景重建和给予基本支撑在所要求的退役相日本政府。

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