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首页> 外文期刊>Science and technology of nuclear installation >Assessment of Cesium Compound Behavior during Simultaneous Failure of Reactor Pressure Vessels and Spent Fuel Pools Using Modified ART Mod 2: Fukushima Daiichi Accident Simulation
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Assessment of Cesium Compound Behavior during Simultaneous Failure of Reactor Pressure Vessels and Spent Fuel Pools Using Modified ART Mod 2: Fukushima Daiichi Accident Simulation

机译:使用改良艺术MOD 2的反应器压力容器和燃料池同时发生铯复合行为评估:Fukushima Daiichi事故模拟

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To support the regional strategy development of ASEAN NPSR using scientific research, Modified ART Mod 2 has been used to assess the fission product release from RPVs and SFPs independently. However, the Fukushima Accident suggested the possibility of simultaneous release from RPV and SFP which indicated the necessity of re-evaluation of the maximum source term. The objective was to assess the fission product behavior during a simultaneous failure in RPVs and SFPs of BWR type with Mark I containment design in multiple units using Modified ART Mod 2 in order to evaluate the maximum source term. The releases of cesium compounds in gas and aerosol forms from RPVs and SFPs of Units 1–3 of the Fukushima Daiichi NPP were selected as the case studies. It was found that the behavior of cesium compounds was mainly governed by the aerosols and atmospheric temperatures, which resulted in different characteristics in adsorption and thermophoresis. It also turned out that the simulation of a simultaneous release led to a smaller release than the summation of independent simulations of releases from RPV and SFP by 25%. This study helped estimate the maximum consequences in order to be able to effectively design the EPR for NPP accidents inside or outside the ASEAN region.
机译:为了支持使用科学研究的东盟NPSR的区域战略,修改的艺术MOD 2已被用于独立于RPV和SFP评估裂变产品。然而,福岛事故表明,从RPV和SFP同时释放的可能性,表明必须重新评估最大来源期限。目的是在使用修改的艺术MOD 2的多个单元中使用MARK I Contract设计的BWR型的RPV和SFP同时发生裂变产品行为,以评估最大源期限。选择从RPV的气体和气溶胶中铯化合物和福岛Daiichi NPP的单位1-3的SFP释放,作为案例研究。发现铯化合物的行为主要受气溶胶和大气温度的控制,这导致吸附和热孔的不同特征。结果表明,同时释放的仿真导致较小的释放,而不是从RPV和SFP的独立模拟的求和25%。本研究有助于估计最大后果,以便能够有效地设计东盟地区内外NPP事故的EPR。

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